VIC-Publications

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References VIC

Publication(s)YearTypeCited
Miller, James R.; Russell, Gary L.; Caliri, Guilherme; 1994. Continental-Scale River Flow in Climate Models. Journal of Climate, 7, 914–928. 10.1175/1520-0442(1994)0072.0.CO;2
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1994

Model overview

260
Liang, Xu; Wood, Eric F.; Lettenmaier, Dennis P.; 1996. Surface soil moisture parameterization of the VIC-2L model: Evaluation and modification. Global and Planetary Change, 13, 195–206. 10.1016/0921-8181(95)00046-1
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1996Model overview 799
Cherkauer, Keith A.; Bowling, Laura C.; Lettenmaier, Dennis P.; 2003. Variable infiltration capacity cold land process model updates. Global and Planetary Change, 38, 151–159. 10.1016/S0921-8181(03)00025-0
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2003Model overview 299
Bowling, L. C.; Pomeroy, J. W.; Lettenmaier, D. P.; 2004. Parameterization of Blowing-Snow Sublimation in a Macroscale Hydrology Model. Journal of Hydrometeorology, 5, 745–762. <0745:POBSIA>2.0.CO;2 10.1175/1525-7541(2004)005<0745:POBSIA>2.0.CO;2
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2004Model overview 121
Lohmann, D.; Raschke, E.; Nijssen, B.; Lettenmaier, D. P.; 1998. Regional scale hydrology: II. Application of the VIC-2L model to the Weser River, Germany. Hydrological Sciences Journal, 43, 143–158. 10.1080/02626669809492108
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1998Model overview 202
Abdulla, Fayez A.; Lettenmaier, Dennis P.; Wood, Eric F.; Smith, James A.; 1996. Application of a macroscale hydrologic model to estimate the water balance of the Arkansas-Red River Basin. Journal of Geophysical Research: Atmospheres, 101, 7449–7459. 10.1029/95JD02416
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1996Model overview 208
Wood, Eric F.; Lettenmaier, Dennis; Liang, Xu; Nijssen, Bart; Wetzel, Suzanne W.; 1997. HYDROLOGICAL MODELING OF CONTINENTAL-SCALE BASINS. Annual Review of Earth and Planetary Sciences, 25, 279–300. 10.1146/annurev.earth.25.1.279
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1997Model overview 163
Nijssen, Bart; Lettenmaier, Dennis P.; Liang, Xu; Wetzel, Suzanne W.; Wood, Eric F.; 1997. Streamflow simulation for continental-scale river basins. Water Resources Research, 33, 711–724. 10.1029/96WR03517
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1997Model overview 472
Lohmann, Dag; Lettenmaier, Dennis P.; Liang, Xu; Wood, Eric F.; Boone, Aaron; Chang, Sam; Chen, Fei; Dai, Yongjiu; Desborough, Carl; Dickinson, Robert E.; Duan, Qingyun; Ek, Michael; Gusev, Yeugeniy M.; Habets, Florence; Irannejad, Parviz; Koster, Randy; Mitchell, Kenneth E.; Nasonova, Olga N.; Noilhan, Joel; Schaake, John; Schlosser, Adam; Shao, Yaping; Shmakin, Andrey B.; Verseghy, Diana; Warrach, Kirsten; Wetzel, Peter; Xue, Yongkang; Yang, Zong-Liang; Zeng, Qing-cun; 1998. The Project for Intercomparison of Land-surface Parameterization Schemes (PILPS) phase 2(c) Red–Arkansas River basin experiment:. Global and Planetary Change, 19, 161–179. 10.1016/S0921-8181(98)00046-0
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1998Model overview 1011
Leung, L. Ruby; Hamlet, Alan F.; Lettenmaier, Dennis P.; Kumar, Arun; 1999. Simulations of the ENSO Hydroclimate Signals in the Pacific Northwest Columbia River Basin. Bulletin of the American Meteorological Society, 80, 2313–2330. 10.1175/1520-0477(1999)0802.0.CO;2
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1999Model overview 109
Matheussen, Bernt; Kirschbaum, Robin L.; Goodman, Iris A.; O'Donnell, Greg M.; Lettenmaier, Dennis P.; 2000. Effects of land cover change on streamflow in the interior Columbia River Basin (USA and Canada). Hydrological Processes, 14, 867–885. 10.1002/(SICI)1099-1085(20000415)14:53.0.CO;2-5
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2000Model overview 227
Hamlet, Alan F.; Lettenmaier, Dennis P.; 2000. Long-range climate forecasting and its use for water management in the Pacific Northwest region of North America. Journal of Hydroinformatics, 2, 163–182. 10.2166/hydro.2000.0015
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2000Model overview 38
Maurer, Edwin P.; O'Donnell, Greg M.; Lettenmaier, Dennis P.; Roads, John O.; 2001. Evaluation of the land surface water budget in NCEP/NCAR and NCEP/DOE reanalyses using an off-line hydrologic model. Journal of Geophysical Research: Atmospheres, 106, 17841–17862. 10.1029/2000JD900828
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2001Model overview 169
Lakshmi, Venkataraman; Albertson, John; Schaake, John; Maurer, Edwin P.; O'Donnell, Greg M.; Lettenmaier, Dennis P.; Roads, John O.; 2001. Evaluation of NCEP/NCAR reanalysis water and energy budgets using macroscale hydrologic model simulations. In: (eds.)Water Science and Application.. 137–158.
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2001Model overview 13
Nijssen, Bart; O'Donnell, Greg M.; Lettenmaier, Dennis P.; Lohmann, Dag; Wood, Eric F.; 2001. Predicting the Discharge of Global Rivers. Journal of Climate, 14, 3307–3323. <3307:PTDOGR>2.0.CO;2 10.1175/1520-0442(2001)014<3307:PTDOGR>2.0.CO;2
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2001Model overview 492
Nijssen, Bart; Schnur, Reiner; Lettenmaier, Dennis P.; 2001. Global Retrospective Estimation of Soil Moisture Using the Variable Infiltration Capacity Land Surface Model, 1980–93. Journal of Climate, 14, 1790–1808. <1790:GREOSM>2.0.CO;2 10.1175/1520-0442(2001)014<1790:GREOSM>2.0.CO;2
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2001Model overview 366
Iqbal, Naveed; Hossain, Faisal; Lee, Hyongki; Akhter, Gulraiz; 2017. Integrated groundwater resource management in Indus Basin using satellite gravimetry and physical modeling tools. Environmental Monitoring and Assessment, 189, 128. 10.1007/s10661-017-5846-1
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2017

Model application

57
Stamm, J.F.; Wood, E.F.; Lettenmaier, D.P.; 1994. Sensitivity of a GCM Simulation of Global Climate to the Representation of Land-Surface Hydrology. Journal of Climate, 7, 1218-1239. <1218:SOAGSO>2.0.CO;2 10.1175/1520-0442(1994)007<1218:SOAGSO>2.0.CO;2
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1994

Model application

66
Lilhare, Rajtantra; Pokorny, Scott; Déry, Stephen J.; Stadnyk, Tricia A.; Koenig, Kristina A.; 2020. Sensitivity analysis and uncertainty assessment in water budgets simulated by the variable infiltration capacity model for Canadian subarctic watersheds. Hydrological Processes, 34, 2057–2075. 10.1002/hyp.13711
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2020Model application 12
Liu, Suning; Shi, Haiyun; Niu, Jun; Chen, Ji; Kuang, Xingxing; 2020. Assessing future socioeconomic drought events under a changing climate over the Pearl River basin in South China. Journal of Hydrology: Regional Studies, 30, 100700. 10.1016/j.ejrh.2020.100700
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2020Model application 16
Chawla, I.; Mujumdar, P.P.; 2020. Evaluating rainfall datasets to reconstruct floods in data-sparse Himalayan region. Journal of Hydrology, 588, 125090. 10.1016/j.jhydrol.2020.125090
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2020Model application 7
Saha, Anamitra; Joseph, Jisha; Ghosh, Subimal; 2020. Climate controls on the terrestrial water balance: Influence of aridity on the basin characteristics parameter in the Budyko framework. Science of The Total Environment, 739, 139863. 10.1016/j.scitotenv.2020.139863
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2020Model application 15
Cassano, John; 2013. Collaborative Research: Towards Advanced Understanding and Predictive Capability of Climate Change in the Arctic Using a High-Resolution Regional Arctic Climate Model. .
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2013

Model application

0
Slater, A. G.; Bohn, T. J.; McCreight, J. L.; Serreze, M. C.; Lettenmaier, D. P.; 2007. A multimodel simulation of pan-Arctic hydrology: MULTIMODEL PAN-ARCTIC HYDROLOGY. Journal of Geophysical Research: Biogeosciences, 112, n/a–n/a. 10.1029/2006JG000303
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2007Model application 92
Liang, Xu; Lettenmaier, Dennis P.; Wood, Eric F.; Burges, Stephen J.; 1994. A simple hydrologically based model of land surface water and energy fluxes for general circulation models. Journal of Geophysical Research, 99, 14415. 10.1029/94JD00483
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1994Model application 3115
Christensen, Niklas S.; Wood, Andrew W.; Voisin, Nathalie; Lettenmaier, Dennis P.; Palmer, Richard N.; 2004. The Effects of Climate Change on the Hydrology and Water Resources of the Colorado River Basin. Climatic Change, 62, 337–363. 10.1023/B:CLIM.0000013684.13621.1f
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2004Model application 951
Christensen, N. S.; Lettenmaier, D. P.; 2007. A multimodel ensemble approach to assessment of climate change impacts on the hydrology and water resources of the Colorado River Basin. Hydrology and Earth System Sciences, 11, 1417–1434. 10.5194/hess-11-1417-2007
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2007Model application 613
Su, Fengge; Hong, Yang; Lettenmaier, Dennis P.; 2008. Evaluation of TRMM Multisatellite Precipitation Analysis (TMPA) and Its Utility in Hydrologic Prediction in the La Plata Basin. Journal of Hydrometeorology, 9, 622–640. 10.1175/2007JHM944.1
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2008Model application 474
Livneh, Ben; Rosenberg, Eric A.; Lin, Chiyu; Nijssen, Bart; Mishra, Vimal; Andreadis, Kostas M.; Maurer, Edwin P.; Lettenmaier, Dennis P.; 2013. A Long-Term Hydrologically Based Dataset of Land Surface Fluxes and States for the Conterminous United States: Update and Extensions. Journal of Climate, 26, 9384–9392. 10.1175/JCLI-D-12-00508.1
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2013Model application 1650
Nijssen, Bart; O'Donnell, Greg M.; Hamlet, Alan F.; Lettenmaier, Dennis P.; 2001. Hydrologic Sensitivity of Global Rivers to Climate Change. Climatic Change, 50, 143–175. 10.1023/A:1010616428763
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2001Model application 596
Andreadis, Konstantinos M.; Lettenmaier, Dennis P.; 2006. Assimilating remotely sensed snow observations into a macroscale hydrology model. Advances in Water Resources, 29, 872–886. 10.1016/j.advwatres.2005.08.004
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2006Model application 386
Kavetski, Dmitri; Kuczera, George; Franks, Stewart W.; 2006. Bayesian analysis of input uncertainty in hydrological modeling: 2. Application: INPUT UNCERTAINTY IN HYDROLOGY, 2. Water Resources Research, 42, . 10.1029/2005WR004376
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2006Model application 415
Bao, Zhenxin; Zhang, Jianyun; Wang, Guoqing; Fu, Guobin; He, Ruimin; Yan, Xiaolin; Jin, Junliang; Liu, Yanli; Zhang, Aijing; 2012. Attribution for decreasing streamflow of the Haihe River basin, northern China: Climate variability or human activities?. Journal of Hydrology, 460, 117–129. 10.1016/j.jhydrol.2012.06.054
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2012Model application 228
Yong, Bin; Ren, Li-Liang; Hong, Yang; Wang, Jia-Hu; Gourley, Jonathan J.; Jiang, Shan-Hu; Chen, Xi; Wang, Wen; 2010. Hydrologic evaluation of Multisatellite Precipitation Analysis standard precipitation products in basins beyond its inclined latitude band: A case study in Laohahe basin, China: HYDROLOGIC EVALUATION OF TMPA PRODUCTS. Water Resources Research, 46, . 10.1029/2009WR008965
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2010Model application 228
Xia, Youlong; Mitchell, Kenneth; Ek, Michael; Cosgrove, Brian; Sheffield, Justin; Luo, Lifeng; Alonge, Charles; Wei, Helin; Meng, Jesse; Livneh, Ben; Duan, Qingyun; Lohmann, Dag; 2012. Continental-scale water and energy flux analysis and validation for North American Land Data Assimilation System project phase 2 (NLDAS-2): 2. Validation of model-simulated streamflow: VALIDATION OF MODEL-SIMULATED STREAMFLOW. Journal of Geophysical Research: Atmospheres, 117, n/a–n/a. 10.1029/2011JD016051
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2012Model application 352
Sheffield, Justin; Wood, Eric F.; 2007. Characteristics of global and regional drought, 1950–2000: Analysis of soil moisture data from off-line simulation of the terrestrial hydrologic cycle. Journal of Geophysical Research, 112, D17115. 10.1029/2006JD008288
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2007Model application 340
Devia, Gayathri K.; Ganasri, B.P.; Dwarakish, G.S.; 2015. A Review on Hydrological Models. Aquatic Procedia, 4, 1001–1007. 10.1016/j.aqpro.2015.02.126
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2015

Model application

454
Leng, Guoyong; Tang, Qiuhong; Rayburg, Scott; 2015. Climate change impacts on meteorological, agricultural and hydrological droughts in China. Global and Planetary Change, 126, 23–34. 10.1016/j.gloplacha.2015.01.003
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2015Model application 282
Ahmad, Sajjad; Kalra, Ajay; Stephen, Haroon; 2010. Estimating soil moisture using remote sensing data: A machine learning approach. Advances in Water Resources, 33, 69–80. 10.1016/j.advwatres.2009.10.008
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2010Model application 323
Wu, Huan; Adler, Robert F.; Tian, Yudong; Huffman, George J.; Li, Hongyi; Wang, JianJian; 2014. Real-time global flood estimation using satellite-based precipitation and a coupled land surface and routing model. Water Resources Research, 50, 2693–2717. 10.1002/2013WR014710
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2014Model application 241
Chang, Jianxia; Wang, Yimin; Istanbulluoglu, Erkan; Bai, Tao; Huang, Qiang; Yang, Dawen; Huang, Shengzhi; 2015. Impact of climate change and human activities on runoff in the Weihe River Basin, China. Quaternary International, 380, 169–179. 10.1016/j.quaint.2014.03.048
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2015Model application 162
Wood, Eric F.; Lettenmaier, Dennis P.; Zartarian, Valerie G.; 1992. A land-surface hydrology parameterization with subgrid variability for general circulation models. Journal of Geophysical Research, 97, 2717. 10.1029/91JD01786
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1992Model application 563
Wang, Jiahu; Hong, Yang; Gourley, Jonathan; Adhikari, Pradeep; Li, Li; Su, Fengge; 2010. Quantitative assessment of climate change and human impacts on long-term hydrologic response: a case study in a sub-basin of the Yellow River, China: QUANTITATION OF CLIMATE CHANGE AND HUMAN IMPACT ON HYDROLOGIC RESPONSE. International Journal of Climatology, 30, 2130–2137. 10.1002/joc.2023
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2010Model application 168
Sheffield, Justin; 2004. A simulated soil moisture based drought analysis for the United States. Journal of Geophysical Research, 109, D24108. 10.1029/2004JD005182
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2004Model application 319
Mao, Dazhi; Cherkauer, Keith A.; 2009. Impacts of land-use change on hydrologic responses in the Great Lakes region. Journal of Hydrology, 374, 71–82. 10.1016/j.jhydrol.2009.06.016
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2009Model application 221
Lohmann, D.; Raschke, E.; Nijssen, B.; Lettenmaier, D. P.; 1998. Regional scale hydrology: I. Formulation of the VIC-2L model coupled to a routing model. Hydrological Sciences Journal, 43, 131–141. 10.1080/02626669809492107
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1998Model application 468
Zhang, Leilei; Su, Fengge; Yang, Daqing; Hao, Zhenchun; Tong, Kai; 2013. Discharge regime and simulation for the upstream of major rivers over Tibetan Plateau: DISCHARGE FOR THE RIVERS OVER THE TP. Journal of Geophysical Research: Atmospheres, 118, 8500–8518. 10.1002/jgrd.50665
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2013Model application 206
Cuo, Lan; Zhang, Yongxin; Gao, Yanhong; Hao, Zhenchun; Cairang, Luosang; 2013. The impacts of climate change and land cover/use transition on the hydrology in the upper Yellow River Basin, China. Journal of Hydrology, 502, 37–52. 10.1016/j.jhydrol.2013.08.003
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2013Model application 169
Cherkauer, Keith A.; Lettenmaier, Dennis P.; 1999. Hydrologic effects of frozen soils in the upper Mississippi River basin. Journal of Geophysical Research: Atmospheres, 104, 19599–19610. 10.1029/1999JD900337
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1999Model application 345
Lievens, H.; Tomer, S.K.; Al Bitar, A.; De Lannoy, G.J.M.; Drusch, M.; Dumedah, G.; Hendricks Franssen, H.-J.; Kerr, Y.H.; Martens, B.; Pan, M.; Roundy, J.K.; Vereecken, H.; Walker, J.P.; Wood, E.F.; Verhoest, N.E.C.; Pauwels, V.R.N.; 2015. SMOS soil moisture assimilation for improved hydrologic simulation in the Murray Darling Basin, Australia. Remote Sensing of Environment, 168, 146–162. 10.1016/j.rse.2015.06.025
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2015Model application 175
Bi, Haiyun; Ma, Jianwen; Wang, Fangjian; 2015. An Improved Particle Filter Algorithm Based on Ensemble Kalman Filter and Markov Chain Monte Carlo Method. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 8, 447–459. 10.1109/JSTARS.2014.2322096
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2015Model application 62
Drusch, M.; 2005. Observation operators for the direct assimilation of TRMM microwave imager retrieved soil moisture. Geophysical Research Letters, 32, L15403. 10.1029/2005GL023623
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2005Model application 210
Lee, Se-Yeun; Ryan, Maureen E.; Hamlet, Alan F.; Palen, Wendy J.; Lawler, Joshua J.; Halabisky, Meghan; Richardson, Curtis J.; 2015. Projecting the Hydrologic Impacts of Climate Change on Montane Wetlands. PLOS ONE, 10, e0136385. 10.1371/journal.pone.0136385
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2015Model application 58
Shukla, S.; Sheffield, J.; Wood, E. F.; Lettenmaier, D. P.; 2013. On the sources of global land surface hydrologic predictability. Hydrology and Earth System Sciences, 17, 2781–2796. 10.5194/hess-17-2781-2013
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2013Model application 107
Vicuna, Sebastian; Maurer, Edwin P.; Joyce, Brian; Dracup, John A.; Purkey, David; 2007. The Sensitivity of California Water Resources to Climate Change Scenarios. Journal of the American Water Resources Association, 43, 482–498. 10.1111/j.1752-1688.2007.00038.x
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2007Model application 164
Mo, Kingtse C.; 2008. Model-Based Drought Indices over the United States. Journal of Hydrometeorology, 9, 1212–1230. 10.1175/2008JHM1002.1
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2008Model application 145
Haddeland, Ingjerd; Skaugen, Thomas; Lettenmaier, Dennis P.; 2006. Anthropogenic impacts on continental surface water fluxes. Geophysical Research Letters, 33, L08406. 10.1029/2006GL026047
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2006Model application 198
Wang, G. Q.; Zhang, J. Y.; Jin, J. L.; Pagano, T. C.; Calow, R.; Bao, Z. X.; Liu, C. S.; Liu, Y. L.; Yan, X. L.; 2012. Assessing water resources in China using PRECIS projections and a VIC model. Hydrology and Earth System Sciences, 16, 231–240. 10.5194/hess-16-231-2012
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2012Model application 112
Gergel, Diana R.; Nijssen, Bart; Abatzoglou, John T.; Lettenmaier, Dennis P.; Stumbaugh, Matt R.; 2017. Effects of climate change on snowpack and fire potential in the western USA. Climatic Change, 141, 287–299. 10.1007/s10584-017-1899-y
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2017Model application 131
Zhang, Xue-Jun; Tang, Qiuhong; Pan, Ming; Tang, Yin; 2014. A Long-Term Land Surface Hydrologic Fluxes and States Dataset for China. Journal of Hydrometeorology, 15, 2067–2084. 10.1175/JHM-D-13-0170.1
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2014Model application 124
Hurkmans, Ruud; Terink, Wilco; Uijlenhoet, Remko; Torfs, Paul; Jacob, Daniela; Troch, Peter A.; 2010. Changes in Streamflow Dynamics in the Rhine Basin under Three High-Resolution Regional Climate Scenarios. Journal of Climate, 23, 679–699. 10.1175/2009JCLI3066.1
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2010Model application 111
Huang, Shengzhi; Chang, Jianxia; Leng, Guoyong; Huang, Qiang; 2015. Integrated index for drought assessment based on variable fuzzy set theory: A case study in the Yellow River basin, China. Journal of Hydrology, 527, 608–618. 10.1016/j.jhydrol.2015.05.032
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2015Model application 91
Liang, Xu; Lettenmaier, Dennis P.; Wood, Eric F.; 1996. One-dimensional statistical dynamic representation of subgrid spatial variability of precipitation in the two-layer variable infiltration capacity model. Journal of Geophysical Research: Atmospheres, 101, 21403–21422. 10.1029/96JD01448
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1996Model application 418
Sheffield, Justin; Pan, Ming; Wood, Eric F.; Mitchell, Kenneth E.; Houser, Paul R.; Schaake, John C.; Robock, Alan; Lohmann, Dag; Cosgrove, Brian; Duan, Qingyun; Luo, Lifeng; Higgins, R. Wayne; Pinker, Rachel T.; Tarpley, J. Dan; Ramsay, Bruce H.; 2003. Snow process modeling in the North American Land Data Assimilation System (NLDAS): 1. Evaluation of model‐simulated snow cover extent. Journal of Geophysical Research: Atmospheres, 108, 2002JD003274. 10.1029/2002JD003274
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2003Model application 176
Liang, Xu; 2003. A new parameterization for surface and groundwater interactions and its impact on water budgets with the variable infiltration capacity (VIC) land surface model. Journal of Geophysical Research, 108, 8613. 10.1029/2002JD003090
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2003Model application 245
Li, Binghao; Zeng, Yang; Reeves, Patrick M.; Ran, Chongzhao; Liu, Qiuyan; Qu, Xiying; Liang, Yingying; Liu, Zhao; Yuan, Jianping; Leblanc, Pierre R.; Ye, Zhaoming; Sluder, Ann E.; Gelfand, Jeffrey A.; Brauns, Timothy A.; Chen, Huabiao; Poznansky, Mark C.; 2018. AMD3100 Augments the Efficacy of Mesothelin-Targeted, Immune-Activating VIC-008 in Mesothelioma by Modulating Intratumoral Immunosuppression. Cancer Immunology Research, 6, 539–551. 10.1158/2326-6066.CIR-17-0530
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2018Model application 27
Anghileri, D.; Voisin, N.; Castelletti, A.; Pianosi, F.; Nijssen, B.; Lettenmaier, D. P.; 2016. Value of long-term streamflow forecasts to reservoir operations for water supply in snow-dominated river catchments: VALUE OF LONG-TERM FORECASTS TO RESERVOIR OPERATIONS. Water Resources Research, 52, 4209–4225. 10.1002/2015WR017864
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2016Model application 131
Mishra, Vimal; Cherkauer, Keith A.; 2010. Retrospective droughts in the crop growing season: Implications to corn and soybean yield in the Midwestern United States. Agricultural and Forest Meteorology, 150, 1030–1045. 10.1016/j.agrformet.2010.04.002
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2010Model application 174
Mo, Kingtse C.; Lettenmaier, Dennis P.; 2014. Hydrologic Prediction over the Conterminous United States Using the National Multi-Model Ensemble. Journal of Hydrometeorology, 15, 1457–1472. 10.1175/JHM-D-13-0197.1
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2014Model application 79
Mo, Kingtse C.; Chen, Li-Chuan; Shukla, Shraddhanand; Bohn, Theodore J.; Lettenmaier, Dennis P.; 2012. Uncertainties in North American Land Data Assimilation Systems over the Contiguous United States. Journal of Hydrometeorology, 13, 996–1009. 10.1175/JHM-D-11-0132.1
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2012Model application 48
Mishra, Vimal; Cherkauer, Keith A.; Shukla, Shraddhanand; 2010. Assessment of Drought due to Historic Climate Variability and Projected Future Climate Change in the Midwestern United States. Journal of Hydrometeorology, 11, 46–68. 10.1175/2009JHM1156.1
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2010Model application 140
Schumann, G. J.-P.; Neal, J. C.; Voisin, N.; Andreadis, K. M.; Pappenberger, F.; Phanthuwongpakdee, N.; Hall, A. C.; Bates, P. D.; 2013. A first large-scale flood inundation forecasting model: Large-Scale Flood Inundation Forecasting. Water Resources Research, 49, 6248–6257. 10.1002/wrcr.20521
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2013Model application 149
Liang, Xu; Xie, Zhenghui; 2001. A new surface runoff parameterization with subgrid-scale soil heterogeneity for land surface models. Advances in Water Resources, 24, 1173–1193. 10.1016/S0309-1708(01)00032-X
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2001Model application 210
Wanders, N.; Pan, M.; Wood, E.F.; 2015. Correction of real-time satellite precipitation with multi-sensor satellite observations of land surface variables. Remote Sensing of Environment, 160, 206–221. 10.1016/j.rse.2015.01.016
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2015Model application 76
Bowling, Laura C.; Lettenmaier, Dennis P.; 2010. Modeling the Effects of Lakes and Wetlands on the Water Balance of Arctic Environments. Journal of Hydrometeorology, 11, 276–295. 10.1175/2009JHM1084.1
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2010Model application 125
Wang, Zhaoli; Zhong, Ruida; Lai, Chengguang; Chen, Jiachao; 2017. Evaluation of the GPM IMERG satellite-based precipitation products and the hydrological utility. Atmospheric Research, 196, 151–163. 10.1016/j.atmosres.2017.06.020
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2017Model application 158
Hidalgo, Hugo G.; Amador, Jorge A.; Alfaro, Eric J.; Quesada, Beatriz; 2013. Hydrological climate change projections for Central America. Journal of Hydrology, 495, 94–112. 10.1016/j.jhydrol.2013.05.004
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2013Model application 110
Das, Tapash; Dettinger, Michael D.; Cayan, Daniel R.; Hidalgo, Hugo G.; 2011. Potential increase in floods in California’s Sierra Nevada under future climate projections. Climatic Change, 109, 71–94. 10.1007/s10584-011-0298-z
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2011Model application 111
Gao, H.; Wood, E. F.; Jackson, T. J.; Drusch, M.; Bindlish, R.; 2006. Using TRMM/TMI to Retrieve Surface Soil Moisture over the Southern United States from 1998 to 2002. Journal of Hydrometeorology, 7, 23–38. 10.1175/JHM473.1
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2006Model application 133
Cai, Xitian; Yang, Zong-Liang; Xia, Youlong; Huang, Maoyi; Wei, Helin; Leung, L. Ruby; Ek, Michael B.; 2014. Assessment of simulated water balance from Noah, Noah-MP, CLM, and VIC over CONUS using the NLDAS test bed. Journal of Geophysical Research: Atmospheres, 119, 13,751–13,770. 10.1002/2014JD022113
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2014Model application 124
Pan, M; Wood, E; Wojcik, R; Mccabe, M; 2008. Estimation of regional terrestrial water cycle using multi-sensor remote sensing observations and data assimilation. Remote Sensing of Environment, 112, 1282–1294. 10.1016/j.rse.2007.02.039
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2008Model application 140
Cuo, Lan; Zhang, Yongxin; Bohn, Theodore J.; Zhao, Lin; Li, Jialuo; Liu, Qiming; Zhou, Bingrong; 2015. Frozen soil degradation and its effects on surface hydrology in the northern Tibetan Plateau. Journal of Geophysical Research: Atmospheres, 120, 8276–8298. 10.1002/2015JD023193
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2015Model application 100
Xia, Youlong; Ek, Mike; Wei, Helin; Meng, Jesse; 2012. Comparative analysis of relationships between NLDAS-2 forcings and model outputs. Hydrological Processes, 26, 467–474. 10.1002/hyp.8240
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2012Model application 76
Byun, Kyuhyun; Chiu, Chun-Mei; Hamlet, Alan F.; 2019. Effects of 21st century climate change on seasonal flow regimes and hydrologic extremes over the Midwest and Great Lakes region of the US. Science of The Total Environment, 650, 1261–1277. 10.1016/j.scitotenv.2018.09.063
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2019Model application 68
Gao, Yanhong; Vano, Julie A.; Zhu, Chunmei; Lettenmaier, Dennis P.; 2011. Evaluating climate change over the Colorado River basin using regional climate models. Journal of Geophysical Research, 116, D13104. 10.1029/2010JD015278
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2011Model application 79
Xie, Zhenghui; Yuan, Fei; Duan, Qingyun; Zheng, Jing; Liang, Miaoling; Chen, Feng; 2007. Regional Parameter Estimation of the VIC Land Surface Model: Methodology and Application to River Basins in China. Journal of Hydrometeorology, 8, 447–468. 10.1175/JHM568.1
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2007Model application 156
Yang, Guoxiang; Bowling, Laura C.; Cherkauer, Keith A.; Pijanowski, Bryan C.; 2011. The impact of urban development on hydrologic regime from catchment to basin scales. Landscape and Urban Planning, 103, 237–247. 10.1016/j.landurbplan.2011.08.003
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2011Model application 100
Shadkam, Somayeh; Ludwig, Fulco; van Vliet, Michelle T.H.; Pastor, Amandine; Kabat, Pavel; 2016. Preserving the world second largest hypersaline lake under future irrigation and climate change. Science of The Total Environment, 559, 317–325. 10.1016/j.scitotenv.2016.03.190
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2016Model application 49
Li, Hongyi; Huang, Maoyi; Wigmosta, Mark S.; Ke, Yinghai; Coleman, André M.; Leung, L. Ruby; Wang, Aihui; Ricciuto, Daniel M.; 2011. Evaluating runoff simulations from the Community Land Model 4.0 using observations from flux towers and a mountainous watershed: EVALUATING RUNOFF SIMULATIONS FROM CLM4. Journal of Geophysical Research: Atmospheres, 116, n/a–n/a. 10.1029/2011JD016276
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2011

Model application

98
Qiao, Lei; Hong, Yang; McPherson, Renee; Shafer, Mark; Gade, David; Williams, David; Chen, Sheng; Lilly, Douglas; 2014. Climate Change and Hydrological Response in the Trans-State Oologah Lake Watershed–Evaluating Dynamically Downscaled NARCCAP and Statistically Downscaled CMIP3 Simulations with VIC Model. Water Resources Management, 28, 3291–3305. 10.1007/s11269-014-0678-z
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2014Model application 22
Guo, ShengLian; Guo, Jing; Zhang, Jun; Chen, Hua; 2009. VIC distributed hydrological model to predict climate change impact in the Hanjiang basin. Science in China Series E: Technological Sciences, 52, 3234–3239. 10.1007/s11431-009-0355-2
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2009Model application 38
Luo, Lifeng; Wood, Eric F.; 2007. Monitoring and predicting the 2007 U.S. drought. Geophysical Research Letters, 34, L22702. 10.1029/2007GL031673
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2007Model application 127
Gao, Huilin; Tang, Qiuhong; Ferguson, Craig R.; Wood, Eric F.; Lettenmaier, Dennis P.; 2010. Estimating the water budget of major US river basins via remote sensing. International Journal of Remote Sensing, 31, 3955–3978. 10.1080/01431161.2010.483488
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2010Model application 119
Siddique-E-Akbor, A. H. M.; Hossain, Faisal; Sikder, Safat; Shum, C. K.; Tseng, Steven; Yi, Yuchan; Turk, F. J.; Limaye, Ashutosh; 2014. Satellite Precipitation Data–Driven Hydrological Modeling for Water Resources Management in the Ganges, Brahmaputra, and Meghna Basins. Earth Interactions, 18, 1–25. 10.1175/EI-D-14-0017.1
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2014Model application 49
Yuan, Xing; Wood, Eric F.; Chaney, Nathaniel W.; Sheffield, Justin; Kam, Jonghun; Liang, Miaoling; Guan, Kaiyu; 2013. Probabilistic Seasonal Forecasting of African Drought by Dynamical Models. Journal of Hydrometeorology, 14, 1706–1720. 10.1175/JHM-D-13-054.1
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2013Model application 77
Wang, Zhaoli; Zhong, Ruida; Lai, Chengguang; Zeng, Zhaoyang; Lian, Yanqing; Bai, Xiaoyan; 2018. Climate change enhances the severity and variability of drought in the Pearl River Basin in South China in the 21st century. Agricultural and Forest Meteorology, 249, 149–162. 10.1016/j.agrformet.2017.12.077
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2018Model application 100
Sun, Ruochen; Yuan, Huiling; Liu, Xiaoli; Jiang, Xiaoman; 2016. Evaluation of the latest satellite–gauge precipitation products and their hydrologic applications over the Huaihe River basin. Journal of Hydrology, 536, 302–319. 10.1016/j.jhydrol.2016.02.054
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2016Model application 111
Hurkmans, R. T. W. L.; Terink, W.; Uijlenhoet, R.; Moors, E. J.; Troch, P. A.; Verburg, P. H.; 2009. Effects of land use changes on streamflow generation in the Rhine basin: EFFECTS OF LAND USE CHANGES ON STREAMFLOW. Water Resources Research, 45, . 10.1029/2008WR007574
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2009Model application 110
Adam, Jennifer C.; Haddeland, Ingjerd; Su, Fengge; Lettenmaier, Dennis P.; 2007. Simulation of reservoir influences on annual and seasonal streamflow changes for the Lena, Yenisei, and Ob' rivers. Journal of Geophysical Research, 112, D24114. 10.1029/2007JD008525
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2007Model application 118
Bohn, T J; Lettenmaier, D P; Sathulur, K; Bowling, L C; Podest, E; McDonald, K C; Friborg, T; 2007. Methane emissions from western Siberian wetlands: heterogeneity and sensitivity to climate change. Environmental Research Letters, 2, 045015. 10.1088/1748-9326/2/4/045015
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2007

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128
Wenger, Seth J.; Luce, Charles H.; Hamlet, Alan F.; Isaak, Daniel J.; Neville, Helen M.; 2010. Macroscale hydrologic modeling of ecologically relevant flow metrics: MODELING ECOLOGICAL STREAM FLOW METRICS. Water Resources Research, 46, . 10.1029/2009WR008839
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2010Model application 133
Koch, Julian; Siemann, Amanda; Stisen, Simon; Sheffield, Justin; 2016. Spatial validation of large-scale land surface models against monthly land surface temperature patterns using innovative performance metrics: Spatial Validation of Distributed Models. Journal of Geophysical Research: Atmospheres, 121, 5430–5452. 10.1002/2015JD024482
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2016Model application 42
Demaria, Eleonora M.; Nijssen, Bart; Wagener, Thorsten; 2007. Monte Carlo sensitivity analysis of land surface parameters using the Variable Infiltration Capacity model. Journal of Geophysical Research, 112, D11113. 10.1029/2006JD007534
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2007Model application 194
Berbery, Ernesto Hugo; Luo, Yan; Mitchell, Kenneth E.; Betts, Alan K.; 2003. Eta model estimated land surface processes and the hydrologic cycle of the Mississippi basin. Journal of Geophysical Research: Atmospheres, 108, 2002JD003192. 10.1029/2002JD003192
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2003Model application 49
Liang, Xu; Guo, Jianzhong; Leung, L.Ruby; 2004. Assessment of the effects of spatial resolutions on daily water flux simulations. Journal of Hydrology, 298, 287–310. 10.1016/j.jhydrol.2003.07.007
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2004Model application 91
Lee, Kyungtae; Gao, Huilin; Huang, Maoyi; Sheffield, Justin; Shi, Xiaogang; 2017. Development and Application of Improved Long-Term Datasets of Surface Hydrology for Texas. Advances in Meteorology, 2017, 1–13. 10.1155/2017/8485130
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2017Model application 7
Yang, Guoxiang; Bowling, Laura C.; Cherkauer, Keith A.; Pijanowski, Bryan C.; Niyogi, Dev; 2010. Hydroclimatic Response of Watersheds to Urban Intensity: An Observational and Modeling-Based Analysis for the White River Basin, Indiana. Journal of Hydrometeorology, 11, 122–138. 10.1175/2009JHM1143.1
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2010Model application 74
Ziegler, Alan D.; Sheffield, Justin; Maurer, Edwin P.; Nijssen, Bart; Wood, Eric F.; Lettenmaier, Dennis P.; 2003. Detection of Intensification in Global- and Continental-Scale Hydrological Cycles: Temporal Scale of Evaluation. Journal of Climate, 16, 535–547. 10.1175/1520-0442(2003)0162.0.CO;2
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2003Model application 166
Rogers, Maximillian A.; Aikawa, Elena; 2015. A Not-So-Little Role for Lipoprotein(a) in the Development of Calcific Aortic Valve Disease. Circulation, 132, 621–623. 10.1161/CIRCULATIONAHA.115.018139
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2015Model application 19
Ferguson, Craig R.; Sheffield, Justin; Wood, Eric F.; Gao, Huilin; 2010. Quantifying uncertainty in a remote sensing-based estimate of evapotranspiration over continental USA. International Journal of Remote Sensing, 31, 3821–3865. 10.1080/01431161.2010.483490
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2010Model application 85
Ray, Ram L.; Jacobs, Jennifer M.; Cosh, Michael H.; 2010. Landslide susceptibility mapping using downscaled AMSR-E soil moisture: A case study from Cleveland Corral, California, US. Remote Sensing of Environment, 114, 2624–2636. 10.1016/j.rse.2010.05.033
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2010Model application 101
Su, Fengge; 2005. Streamflow simulations of the terrestrial Arctic domain. Journal of Geophysical Research, 110, D08112. 10.1029/2004JD005518
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2005Model application 109
Mishra, Vimal; Cherkauer, Keith A.; Niyogi, Dev; Lei, Ming; Pijanowski, Bryan C.; Ray, Deepak K.; Bowling, Laura C.; Yang, Guoxiang; 2010. A regional scale assessment of land use/land cover and climatic changes on water and energy cycle in the upper Midwest United States: REGIONAL SCALE ASSESSMENT OF LAND USE/LAND COVER AND CLIMATIC CHANGES. International Journal of Climatology, 30, 2025–2044. 10.1002/joc.2095
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2010Model application 110
Wood, Andrew W.; 2005. A retrospective assessment of National Centers for Environmental Prediction climate model–based ensemble hydrologic forecasting in the western United States. Journal of Geophysical Research, 110, D04105. 10.1029/2004JD004508
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2005Model application 102
Kang, Do Hyuk; Gao, Huilin; Shi, Xiaogang; Islam, Siraj ul; Déry, Stephen J.; 2016. Impacts of a Rapidly Declining Mountain Snowpack on Streamflow Timing in Canada’s Fraser River Basin. Scientific Reports, 6, 19299. 10.1038/srep19299
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2016Model application 37
Wu, Z. Y.; Lu, G. H.; Wen, L.; Lin, C. A.; 2011. Reconstructing and analyzing China's fifty-nine year (1951–2009) drought history using hydrological model simulation. Hydrology and Earth System Sciences Discussions, 8, 1861–1893. 10.5194/hess-15-2881-2011
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2011Model application 75
Hurkmans, R. T. W. L.; de Moel, H.; Aerts, J. C. J. H.; Troch, P. A.; 2008. Water balance versus land surface model in the simulation of Rhine river discharges: WATER BALANCE VERSUS LAND SURFACE MODEL. Water Resources Research, 44, . 10.1029/2007WR006168
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2008Model application 69
Abdulla, Fayez A; Lettenmaier, Dennis P; 1997. Development of regional parameter estimation equations for a macroscale hydrologic model. Journal of Hydrology, 197, 230–257. 10.1016/S0022-1694(96)03262-3
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1997Model application 177
Billah, Mirza M.; Goodall, Jonathan L.; Narayan, Ujjwal; Essawy, Bakinam T.; Lakshmi, Venkat; Rajasekar, Arcot; Moore, Reagan W.; 2016. Using a data grid to automate data preparation pipelines required for regional-scale hydrologic modeling. Environmental Modelling &amp; Software, 78, 31–39. 10.1016/j.envsoft.2015.12.010
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2016Model application 27
Yan, Dan; Werners, Saskia E.; Ludwig, Fulco; Huang, He Qing; 2015. Hydrological response to climate change: The Pearl River, China under different RCP scenarios. Journal of Hydrology: Regional Studies, 4, 228–245. 10.1016/j.ejrh.2015.06.006
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2015Model application 90
Newman, Andrew J.; Mizukami, Naoki; Clark, Martyn P.; Wood, Andrew W.; Nijssen, Bart; Nearing, Grey; 2017. Benchmarking of a Physically Based Hydrologic Model. Journal of Hydrometeorology, 18, 2215–2225. 10.1175/JHM-D-16-0284.1
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2017Model application 72
Xia, Youlong; Ek, Michael B.; Wu, Yihua; Ford, Trent; Quiring, Steven M.; 2015. Comparison of NLDAS-2 Simulated and NASMD Observed Daily Soil Moisture. Part I: Comparison and Analysis. Journal of Hydrometeorology, 16, 1962–1980. 10.1175/JHM-D-14-0096.1
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2015Model application 83
Vano, Julie A.; Nijssen, Bart; Lettenmaier, Dennis P.; 2015. Seasonal hydrologic responses to climate change in the P acific N orthwest. Water Resources Research, 51, 1959–1976. 10.1002/2014WR015909
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2015Model application 75
Kam, Jonghun; Sheffield, Justin; Yuan, Xing; Wood, Eric F.; 2013. The Influence of Atlantic Tropical Cyclones on Drought over the Eastern United States (1980–2007). Journal of Climate, 26, 3067–3086. 10.1175/JCLI-D-12-00244.1
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2013Model application 53
Hamman, Joseph J.; Nijssen, Bart; Bohn, Theodore J.; Gergel, Diana R.; Mao, Yixin; 2018. The Variable Infiltration Capacity model version 5 (VIC-5): infrastructure improvements for new applications and reproducibility. Geoscientific Model Development, 11, 3481–3496. 10.5194/gmd-11-3481-2018
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2018Model application 96
Voisin, Nathalie; Pappenberger, Florian; Lettenmaier, Dennis P.; Buizza, Roberto; Schaake, John C.; 2011. Application of a Medium-Range Global Hydrologic Probabilistic Forecast Scheme to the Ohio River Basin. Weather and Forecasting, 26, 425–446. 10.1175/WAF-D-10-05032.1
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2011Model application 54
Tavakoly, Ahmad A.; Snow, Alan D.; David, Cédric H.; Follum, Michael L.; Maidment, David R.; Yang, Zong-Liang; 2017. Continental-Scale River Flow Modeling of the Mississippi River Basin Using High-Resolution NHD Plus Dataset. JAWRA Journal of the American Water Resources Association, 53, 258–279. 10.1111/1752-1688.12456
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2017Model application 41
Sheffield, Justin; Livneh, Ben; Wood, Eric F.; 2012. Representation of Terrestrial Hydrology and Large-Scale Drought of the Continental United States from the North American Regional Reanalysis. Journal of Hydrometeorology, 13, 856–876. 10.1175/JHM-D-11-065.1
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2012Model application 56
Zhao, Qiudong; Ye, Baisheng; Ding, Yongjian; Zhang, Shiqiang; Yi, Shuhua; Wang, Jian; Shangguan, Donghui; Zhao, Chuancheng; Han, Haidong; 2013. Coupling a glacier melt model to the Variable Infiltration Capacity (VIC) model for hydrological modeling in north-western China. Environmental Earth Sciences, 68, 87–101. 10.1007/s12665-012-1718-8
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2013Model application 64
Tang, Qiuhong; Vivoni, Enrique R.; 2012. Predictability of Evapotranspiration Patterns Using Remotely Sensed Vegetation Dynamics during the North American Monsoon. Journal of Hydrometeorology, 13, 103–121. 10.1175/JHM-D-11-032.1
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2012Model application 65
Urban, Daniel W.; Roberts, Michael J.; Schlenker, Wolfram; Lobell, David B.; 2015. The effects of extremely wet planting conditions on maize and soybean yields. Climatic Change, 130, 247–260. 10.1007/s10584-015-1362-x
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2015Model application 43
Yuan, Xing; 2016. An experimental seasonal hydrological forecasting system over the Yellow River basin &amp;ndash; Part 2: The added value from climate forecast models. Hydrology and Earth System Sciences, 20, 2453–2466. 10.5194/hess-20-2453-2016
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2016Model application 34
Shukla, S.; McNally, A.; Husak, G.; Funk, C.; 2014. A seasonal agricultural drought forecast system for food-insecure regions of East Africa. Hydrology and Earth System Sciences Discussions, 11, 3049–3081. 10.5194/hessd-11-3049-2014
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2014Model application 125
Verhoest, Niko E. C.; van den Berg, Martinus Johannes; Martens, Brecht; Lievens, Hans; Wood, Eric F.; Pan, Ming; Kerr, Yann H.; Al Bitar, Ahmad; Tomer, Sat K.; Drusch, Matthias; Vernieuwe, Hilde; De Baets, Bernard; Walker, Jeffrey P.; Dumedah, Gift; Pauwels, Valentijn R. N.; 2015. Copula-Based Downscaling of Coarse-Scale Soil Moisture Observations With Implicit Bias Correction. IEEE Transactions on Geoscience and Remote Sensing, 53, 3507–3521. 10.1109/TGRS.2014.2378913
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2015Model application 61
Eum, Hyung-Il; Dibike, Yonas; Prowse, Terry; 2017. Climate-induced alteration of hydrologic indicators in the Athabasca River Basin, Alberta, Canada. Journal of Hydrology, 544, 327–342. 10.1016/j.jhydrol.2016.11.034
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2017Model application 72
Xiao, Mu; Nijssen, Bart; Lettenmaier, Dennis P.; 2016. Drought in the Pacific Northwest, 1920–2013. Journal of Hydrometeorology, 17, 2391–2404. 10.1175/JHM-D-15-0142.1
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2016Model application 17
Raptis, C E; van Vliet, M T H; Pfister, S; 2016. Global thermal pollution of rivers from thermoelectric power plants. Environmental Research Letters, 11, 104011. 10.1088/1748-9326/11/10/104011
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2016Model application 56
Lievens, H.; De Lannoy, G.J.M.; Al Bitar, A.; Drusch, M.; Dumedah, G.; Hendricks Franssen, H.-J.; Kerr, Y.H.; Tomer, S.K.; Martens, B.; Merlin, O.; Pan, M.; Roundy, J.K.; Vereecken, H.; Walker, J.P.; Wood, E.F.; Verhoest, N.E.C.; Pauwels, V.R.N.; 2016. Assimilation of SMOS soil moisture and brightness temperature products into a land surface model. Remote Sensing of Environment, 180, 292–304. 10.1016/j.rse.2015.10.033
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2016Model application 64
Warrach, Kirsten; Stieglitz, Marc; Mengelkamp, Heinz-Theo; Raschke, Ehrhard; 2002. Advantages of a Topographically Controlled Runoff Simulation in a Soil–Vegetation–Atmosphere Transfer Model. Journal of Hydrometeorology, 3, 131–148. 10.1175/1525-7541(2002)0032.0.CO;2
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2002

Model application

61
Liu, H.; Tian, F.; Hu, H. C.; Hu, H. P.; Sivapalan, M.; 2013. Soil moisture controls on patterns of grass green-up in Inner Mongolia: an index based approach. Hydrology and Earth System Sciences, 17, 805–815. 10.5194/hess-17-805-2013
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2013Model application 65
Ahmad, Shahryar Khalique; Hossain, Faisal; 2020. Maximizing energy production from hydropower dams using short-term weather forecasts. Renewable Energy, 146, 1560–1577. 10.1016/j.renene.2019.07.126
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2020Model application 34
Zheng, Donghai; Van Der Velde, Rogier; Su, Zhongbo; Wen, Jun; Wang, Xin; 2017. Assessment of Noah land surface model with various runoff parameterizations over a Tibetan river. Journal of Geophysical Research: Atmospheres, 122, 1488–1504. 10.1002/2016JD025572
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2017Model application 33
Yearsley, John; 2012. A grid-based approach for simulating stream temperature: A GRID-BASED APPROACH FOR SIMULATING STREAM TEMPERATURE. Water Resources Research, 48, . 10.1029/2011WR011515
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2012Model application 73
Hamman, Joseph; Nijssen, Bart; Brunke, Michael; Cassano, John; Craig, Anthony; DuVivier, Alice; Hughes, Mimi; Lettenmaier, Dennis P.; Maslowski, Wieslaw; Osinski, Robert; Roberts, Andrew; Zeng, Xubin; 2016. Land Surface Climate in the Regional Arctic System Model. Journal of Climate, 29, 6543–6562. 10.1175/JCLI-D-15-0415.1
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2016Model application 20
Karthikeyan, L.; Pan, Ming; Wanders, Niko; Kumar, D. Nagesh; Wood, Eric F.; 2017. Four decades of microwave satellite soil moisture observations: Part 2. Product validation and inter-satellite comparisons. Advances in Water Resources, 109, 236–252. 10.1016/j.advwatres.2017.09.010
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2017Model application 62
Zhao, Qiudong; Ding, Yongjian; Wang, Jian; Gao, Hongkai; Zhang, Shiqiang; Zhao, Chuancheng; Xu, Junli; Han, Haidong; Shangguan, Donghui; 2019. Projecting climate change impacts on hydrological processes on the Tibetan Plateau with model calibration against the glacier inventory data and observed streamflow. Journal of Hydrology, 573, 60–81. 10.1016/j.jhydrol.2019.03.043
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2019Model application 57
Naz, Bibi S.; Kao, Shih-Chieh; Ashfaq, Moetasim; Rastogi, Deeksha; Mei, Rui; Bowling, Laura C.; 2016. Regional hydrologic response to climate change in the conterminous United States using high-resolution hydroclimate simulations. Global and Planetary Change, 143, 100–117. 10.1016/j.gloplacha.2016.06.003
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2016Model application 86
Liu, Yi; Zhu, Ye; Ren, Liliang; Yong, Bin; Singh, Vijay P.; Yuan, Fei; Jiang, Shanhu; Yang, Xiaoli; 2019. On the mechanisms of two composite methods for construction of multivariate drought indices. Science of The Total Environment, 647, 981–991. 10.1016/j.scitotenv.2018.07.273
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2019Model application 22
Shrestha, Rajesh R.; Peters, Daniel L.; Schnorbus, Markus A.; 2014. Evaluating the ability of a hydrologic model to replicate hydro-ecologically relevant indicators: EVALUATION OF HYDROLOGIC-MODEL-SIMULATED HYDRO-ECOLOGICAL INDICATORS. Hydrological Processes, 28, 4294–4310. 10.1002/hyp.9997
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2014Model application 51
Tang, Qiuhong; Lettenmaier, Dennis P.; 2010. Use of satellite snow-cover data for streamflow prediction in the Feather River Basin, California. International Journal of Remote Sensing, 31, 3745–3762. 10.1080/01431161.2010.483493
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2010Model application 44
Shrestha, Rajesh R.; Schnorbus, Markus A.; Werner, Arelia T.; Berland, Anne J.; 2012. Modelling spatial and temporal variability of hydrologic impacts of climate change in the Fraser River basin, British Columbia, Canada: HYDROLOGIC IMPACTS OF CLIMATE CHANGE IN THE FRASER RIVER BASIN. Hydrological Processes, 26, 1840–1860. 10.1002/hyp.9283
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2012Model application 94
Shi, Xiaogang; Déry, Stephen J.; Groisman, Pavel Ya.; Lettenmaier, Dennis P.; 2013. Relationships between Recent Pan-Arctic Snow Cover and Hydroclimate Trends. Journal of Climate, 26, 2048–2064. 10.1175/JCLI-D-12-00044.1
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2013Model application 26
Chang, Chi-Hung; Lee, Hyongki; Hossain, Faisal; Basnayake, Senaka; Jayasinghe, Susantha; Chishtie, Farrukh; Saah, David; Yu, Hanwen; Sothea, Khem; Du Bui, Duong; 2019. A model-aided satellite-altimetry-based flood forecasting system for the Mekong River. Environmental Modelling &amp; Software, 112, 112–127. 10.1016/j.envsoft.2018.11.017
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2019Model application 21
Andreadis, Konstantinos M.; Liang, Ding; Tsang, Leung; Lettenmaier, Dennis P.; Josberger, Edward G.; 2008. Characterization of Errors in a Coupled Snow Hydrology–Microwave Emission Model. Journal of Hydrometeorology, 9, 149–164. 10.1175/2007JHM885.1
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2008Model application 47
Pan, Ming; Wood, Eric F.; McLaughlin, Dennis B.; Entekhabi, Dara; Luo, Lifeng; 2009. A Multiscale Ensemble Filtering System for Hydrologic Data Assimilation. Part I: Implementation and Synthetic Experiment. Journal of Hydrometeorology, 10, 794–806. 10.1175/2009JHM1088.1
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2009Model application 52
Su, Fengge; Adam, Jennifer C.; Trenberth, Kevin E.; Lettenmaier, Dennis P.; 2006. Evaluation of surface water fluxes of the pan-Arctic land region with a land surface model and ERA-40 reanalysis. Journal of Geophysical Research, 111, D05110. 10.1029/2005JD006387
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2006Model application 68
Najafi, Mohammad Reza; Moradkhani, Hamid; 2015. Multi-model ensemble analysis of runoff extremes for climate change impact assessments. Journal of Hydrology, 525, 352–361. 10.1016/j.jhydrol.2015.03.045
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2015Model application 77
Park, Daeryong; Markus, Momcilo; 2014. Analysis of a changing hydrologic flood regime using the Variable Infiltration Capacity model. Journal of Hydrology, 515, 267–280. 10.1016/j.jhydrol.2014.05.004
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2014Model application 39
Chaney, N. W.; Herman, J. D.; Reed, P. M.; Wood, E. F.; 2015. Flood and drought hydrologic monitoring: the role of model parameter uncertainty. Hydrology and Earth System Sciences, 19, 3239–3251. 10.5194/hess-19-3239-2015
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2015Model application 46
Shukla, S.; Voisin, N.; Lettenmaier, D. P.; 2012. Value of medium range weather forecasts in the improvement of seasonal hydrologic prediction skill. Hydrology and Earth System Sciences, 16, 2825–2838. 10.5194/hess-16-2825-2012
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2012Model application 26
Oubeidillah, A. A.; Kao, S.-C.; Ashfaq, M.; Naz, B. S.; Tootle, G.; 2014. A large-scale, high-resolution hydrological model parameter data set for climate change impact assessment for the conterminous US. Hydrology and Earth System Sciences, 18, 67–84. 10.5194/hess-18-67-2014
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2014Model application 80
Voisin, Nathalie; Wood, Andrew W.; Lettenmaier, Dennis P.; 2008. Evaluation of Precipitation Products for Global Hydrological Prediction. Journal of Hydrometeorology, 9, 388–407. 10.1175/2007JHM938.1
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2008Model application 60
Cao, Qian; Painter, Thomas H.; Currier, William Ryan; Lundquist, Jessica D.; Lettenmaier, Dennis P.; 2018. Estimation of Precipitation over the OLYMPEX Domain during Winter 2015/16. Journal of Hydrometeorology, 19, 143–160. 10.1175/JHM-D-17-0076.1
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2018Model application 15
Tang, Chunling; Piechota, Thomas C.; 2009. Spatial and temporal soil moisture and drought variability in the Upper Colorado River Basin. Journal of Hydrology, 379, 122–135. 10.1016/j.jhydrol.2009.09.052
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2009Model application 73
Zhao, Qiudong; Zhang, Shiqiang; Ding, Yong Jian; Wang, Jian; Han, Haidong; Xu, Junli; Zhao, Chuancheng; Guo, Wanqin; Shangguan, Donghui; 2015. Modeling Hydrologic Response to Climate Change and Shrinking Glaciers in the Highly Glacierized Kunma Like River Catchment, Central Tian Shan. Journal of Hydrometeorology, 16, 2383–2402. 10.1175/JHM-D-14-0231.1
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2015Model application 45
Niu, Jun; Chen, Ji; Sun, Liqun; 2015. Exploration of drought evolution using numerical simulations over the Xijiang (West River) basin in South China. Journal of Hydrology, 526, 68–77. 10.1016/j.jhydrol.2014.11.029
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2015Model application 57
Zhang, Xuejun; Tang, Qiuhong; Liu, Xingcai; Leng, Guoyong; Li, Zhe; 2017. Soil Moisture Drought Monitoring and Forecasting Using Satellite and Climate Model Data over Southwestern China. Journal of Hydrometeorology, 18, 5–23. 10.1175/JHM-D-16-0045.1
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2017Model application 43
Werner, Arelia T.; Cannon, Alex J.; 2016. Hydrologic extremes – an intercomparison of multiple gridded statistical downscaling methods. Hydrology and Earth System Sciences, 20, 1483–1508. 10.5194/hess-20-1483-2016
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2016Model application 93
Ghosh, Subimal; Vittal, H.; Sharma, Tarul; Karmakar, Subhankar; Kasiviswanathan, K. S.; Dhanesh, Y.; Sudheer, K. P.; Gunthe, S. S.; Li, Cheng–Sen; 2016. Indian Summer Monsoon Rainfall: Implications of Contrasting Trends in the Spatial Variability of Means and Extremes. PLOS ONE, 11, e0158670. 10.1371/journal.pone.0158670
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2016Model application 82
Zhan, W.; Pan, M.; Wanders, N.; Wood, E. F.; 2015. Correction of real-time satellite precipitation with satellite soil moisture observations. Hydrology and Earth System Sciences, 19, 4275–4291. 10.5194/hess-19-4275-2015
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2015Model application 34
Wang, Shusen; Pan, Ming; Mu, Qiaozhen; Shi, Xiaoying; Mao, Jiafu; Brümmer, Christian; Jassal, Rachhpal S.; Krishnan, Praveena; Li, Junhua; Black, T. Andrew; 2015. Comparing Evapotranspiration from Eddy Covariance Measurements, Water Budgets, Remote Sensing, and Land Surface Models over Canadaa,b. Journal of Hydrometeorology, 16, 1540–1560. 10.1175/JHM-D-14-0189.1
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2015Model application 75
McGuire, Marketa; Wood, Andrew W.; Hamlet, Alan F.; Lettenmaier, Dennis P.; 2006. Use of Satellite Data for Streamflow and Reservoir Storage Forecasts in the Snake River Basin. Journal of Water Resources Planning and Management, 132, 97–110. 10.1061/(ASCE)0733-9496(2006)132:2(97)
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2006Model application 69
Mizukami, Naoki; Rakovec, Oldrich; Newman, Andrew J.; Clark, Martyn P.; Wood, Andrew W.; Gupta, Hoshin V.; Kumar, Rohini; 2019. On the choice of calibration metrics for “high-flow” estimation using hydrologic models. Hydrology and Earth System Sciences, 23, 2601–2614. 10.5194/hess-23-2601-2019
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2019Model application 54
Leng, GuoYong; Tang, QiuHong; Huang, MaoYi; Hong, Yang; Ruby, Leung L.; 2015. Projected changes in mean and interannual variability of surface water over continental China. Science China Earth Sciences, 58, 739–754. 10.1007/s11430-014-4987-0
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2015Model application 25
Shadkam, Somayeh; Ludwig, Fulco; van Oel, Pieter; Kirmit, Çağla; Kabat, Pavel; 2016. Impacts of climate change and water resources development on the declining inflow into Iran's Urmia Lake. Journal of Great Lakes Research, 42, 942–952. 10.1016/j.jglr.2016.07.033
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2016Model application 84
Chen, X.; Bohn, T. J.; Lettenmaier, D. P.; 2015. Model estimates of climate controls on pan-Arctic wetland methane emissions. Biogeosciences, 12, 6259–6277. 10.5194/bg-12-6259-2015
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2015Model application 17
Zhang, Hongjuan; Hendricks Franssen, Harrie-Jan; Han, Xujun; Vrugt, Jasper A.; Vereecken, Harry; 2017. State and parameter estimation of two land surface models using the ensemble Kalman filter and the particle filter. Hydrology and Earth System Sciences, 21, 4927–4958. 10.5194/hess-21-4927-2017
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2017Model application 43
Su, Fengge; Lettenmaier, Dennis P.; 2009. Estimation of the Surface Water Budget of the La Plata Basin. Journal of Hydrometeorology, 10, 981–998. 10.1175/2009JHM1100.1
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2009Model application 32
Hiep, Nguyen Hoang; Luong, Nguyen Duc; Viet Nga, Tran Thi; Hieu, Bui Thi; Thuy Ha, Ung Thi; Du Duong, Bui; Long, Vu Duc; Hossain, Faisal; Lee, Hyongki; 2018. Hydrological model using ground- and satellite-based data for river flow simulation towards supporting water resource management in the Red River Basin, Vietnam. Journal of Environmental Management, 217, 346–355. 10.1016/j.jenvman.2018.03.100
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2018Model application 13
Liu, Mingliang; Adam, Jennifer C.; Hamlet, Alan F.; 2013. Spatial-temporal variations of evapotranspiration and runoff/precipitation ratios responding to the changing climate in the Pacific Northwest during 1921-2006: TRENDS IN ET AND R/P ACROSS THE PNW. Journal of Geophysical Research: Atmospheres, 118, 380–394. 10.1029/2012JD018400
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2013Model application 20
Leng, Guoyong; Tang, Qiuhong; Huang, Shengzhi; Zhang, Xuejun; Cao, Junjun; 2016. Assessments of joint hydrological extreme risks in a warming climate in China: JOINT HYDROLOGICAL EXTREME RISKS WITH GLOBAL WARMING IN CHINA. International Journal of Climatology, 36, 1632–1642. 10.1002/joc.4447
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2016Model application 24
Jiang, Shanhu; Ren, Liliang; Yong, Bin; Fu, Congbin; Yang, Xiaoli; 2012. Analyzing the effects of climate variability and human activities on runoff from the Laohahe basin in northern China. Hydrology Research, 43, 3–13. 10.2166/nh.2011.133
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2012Model application 40
Chen, Yuyao; Niu, Jun; Kang, Shaozhong; Zhang, Xiaotao; 2018. Effects of irrigation on water and energy balances in the Heihe River basin using VIC model under different irrigation scenarios. Science of The Total Environment, 645, 1183–1193. 10.1016/j.scitotenv.2018.07.254
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2018Model application 33
Xie, Xianhong; Liang, Shunlin; Yao, Yunjun; Jia, Kun; Meng, Shanshan; Li, Jing; 2015. Detection and attribution of changes in hydrological cycle over the Three-North region of China: Climate change versus afforestation effect. Agricultural and Forest Meteorology, 203, 74–87. 10.1016/j.agrformet.2015.01.003
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2015Model application 53
Feng, Xia; Sahoo, Alok; Arsenault, Kristi; Houser, Paul; Luo, Yan; Troy, Tara J.; 2008. The Impact of Snow Model Complexity at Three CLPX Sites. Journal of Hydrometeorology, 9, 1464–1481. 10.1175/2008JHM860.1
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2008Model application 62
Shah, Harsh L.; Mishra, Vimal; 2016. Hydrologic Changes in Indian Subcontinental River Basins (1901–2012). Journal of Hydrometeorology, 17, 2667–2687. 10.1175/JHM-D-15-0231.1
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2016Model application 70
Endalamaw, Abraham; Bolton, W. Robert; Young-Robertson, Jessica M.; Morton, Don; Hinzman, Larry; Nijssen, Bart; 2017. Towards improved parameterization of a macroscale hydrologic model in a discontinuous permafrost boreal forest ecosystem. Hydrology and Earth System Sciences, 21, 4663–4680. 10.5194/hess-21-4663-2017
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2017Model application 10
Bae, Deg-Hyo; Koike, Toshio; Awan, Jehangir Ashraf; Lee, Moon-Hwan; Sohn, Kyung-Hwan; 2015. Climate Change Impact Assessment on Water Resources and Susceptible Zones Identification in the Asian Monsoon Region. Water Resources Management, 29, 5377–5393. 10.1007/s11269-015-1124-6
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2015Model application 20
Yigzaw, Wondmagegn; Hossain, Faisal; 2016. Land Use and Land Cover Impact on Probable Maximum Flood and Sedimentation for Artificial Reservoirs: Case Study in the Western United States. Journal of Hydrologic Engineering, 21, 05015022. 10.1061/(ASCE)HE.1943-5584.0001287
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2016Model application 9
Rajsekhar, Deepthi; Mishra, Ashok K.; Singh, Vijay P.; 2013. Regionalization of Drought Characteristics Using an Entropy Approach. Journal of Hydrologic Engineering, 18, 870–887. 10.1061/(ASCE)HE.1943-5584.0000683
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2013Model application 35
Zhu, Ye; Liu, Yi; Wang, Wen; Singh, Vijay P.; Ma, Xieyao; Yu, Zhiguo; 2019. Three dimensional characterization of meteorological and hydrological droughts and their probabilistic links. Journal of Hydrology, 578, 124016. 10.1016/j.jhydrol.2019.124016
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2019Model application 33
Zhenghui, Xie; Fengge, Su; Xu, Liang; Qingcun, Zeng; Zhenchun, Hao; Yufu, Guo; 2003. Applications of a surface runoff model with horton and dunne runoff for VIC. Advances in Atmospheric Sciences, 20, 165–172. 10.1007/s00376-003-0001-z
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2003Model application 72
Rosenberg, E. A.; Clark, E. A.; Steinemann, A. C.; Lettenmaier, D. P.; 2013. On the contribution of groundwater storage to interannual streamflow anomalies in the Colorado River basin. Hydrology and Earth System Sciences, 17, 1475–1491. 10.5194/hess-17-1475-2013
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2013Model application 28
Gebregiorgis, Abebe S.; Tian, Yudong; Peters-Lidard, Christa D.; Hossain, Faisal; 2012. Tracing hydrologic model simulation error as a function of satellite rainfall estimation bias components and land use and land cover conditions: TRACING HYDROLOGIC MODEL SIMULATION ERROR. Water Resources Research, 48, . 10.1029/2011WR011643
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2012Model application 48
Gao, Huilin; Wood, Eric F.; Drusch, Matthias; Crow, Wade; Jackson, Thomas J.; 2004. Using a Microwave Emission Model to Estimate Soil Moisture from ESTAR Observations during SGP99. Journal of Hydrometeorology, 5, 49–63. <0049:UAMEMT>2.0.CO;2 10.1175/1525-7541(2004)005<0049:UAMEMT>2.0.CO;2
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2004Model application 79
Huang, Maoyi; Liang, Xu; 2006. On the assessment of the impact of reducing parameters and identification of parameter uncertainties for a hydrologic model with applications to ungauged basins. Journal of Hydrology, 320, 37–61. 10.1016/j.jhydrol.2005.07.010
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2006Model application 81
Sun, Shaobo; Chen, Baozhang; Shao, Quanqin; Chen, Jing; Liu, Jiyuan; Zhang, Xue-jun; Zhang, Huifang; Lin, Xiaofeng; 2017. Modeling Evapotranspiration over China’s Landmass from 1979 to 2012 Using Multiple Land Surface Models: Evaluations and Analyses. Journal of Hydrometeorology, 18, 1185–1203. 10.1175/JHM-D-16-0212.1
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2017Model application 24
Xu, Xiaolan; Liang, Ding; Tsang, Leung; Andreadis, Konstantinos M.; Josberger, Edward G.; Lettenmaier, Dennis P.; Cline, Donald W.; Yueh, Simon H.; 2010. Active Remote Sensing of Snow Using NMM3D/DMRT and Comparison With CLPX II Airborne Data. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 3, 689–697. 10.1109/JSTARS.2010.2053919
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2010Model application 18
Liu, Yonghe; Yang, Zongliang; Lin, Peirong; Zheng, Ziyan; Xie, Shengjin; 2020. Comparison and evaluation of multiple land surface products for the water budget in the Yellow River Basin. Journal of Hydrology, 584, 124534. 10.1016/j.jhydrol.2019.124534
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2020Model application 5
Sadri, Sara; Wood, Eric F.; Pan, Ming; 2018. Developing a drought-monitoring index for the contiguous US using SMAP. Hydrology and Earth System Sciences, 22, 6611–6626. 10.5194/hess-22-6611-2018
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2018Model application 21
Liu, Zhaofei; Xu, Zongxue; Huang, Junxiong; Charles, Stephen P.; Fu, Guobin; 2009. Impacts of climate change on hydrological processes in the headwater catchment of the Tarim River basin, China. Hydrological Processes, , n/a–n/a. 10.1002/hyp.7493
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2009Model application 58
Liu, X.; Zhang, X.-J.; Tang, Q.; Zhang, X.-Z.; 2014. Effects of surface wind speed decline on modeled hydrological conditions in China. Hydrology and Earth System Sciences, 18, 2803–2813. 10.5194/hess-18-2803-2014
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2014Model application 36
Zhu, Bowen; Xie, Xianhong; Meng, Shanshan; Lu, Chuiyu; Yao, Yi; 2020. Sensitivity of soil moisture to precipitation and temperature over China: Present state and future projection. Science of The Total Environment, 705, 135774. 10.1016/j.scitotenv.2019.135774
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2020Model application 14
Qin, Jia; Ding, YongJian; Wu, JinKui; Gao, MingJie; Yi, ShuHua; Zhao, ChuanCheng; Ye, BaiSheng; Li, Man; Wang, ShengXia; 2013. Understanding the impact of mountain landscapes on water balance in the upper Heihe River watershed in northwestern China. Journal of Arid Land, 5, 366–383. 10.1007/s40333-013-0162-2
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2013Model application 26
Zeng, Xubin; Barlage, Mike; Castro, Chris; Fling, Kelly; 2010. Comparison of Land–Precipitation Coupling Strength Using Observations and Models. Journal of Hydrometeorology, 11, 979–994. 10.1175/2010JHM1226.1
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2010Model application 52
Meng, Lei; Quiring, Steven M.; 2008. A Comparison of Soil Moisture Models Using Soil Climate Analysis Network Observations. Journal of Hydrometeorology, 9, 641–659. 10.1175/2008JHM916.1
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2008Model application 57
Li, Bailing; Rodell, Matthew; Famiglietti, James S.; 2015. Groundwater variability across temporal and spatial scales in the central and northeastern U.S.. Journal of Hydrology, 525, 769–780. 10.1016/j.jhydrol.2015.04.033
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2015Model application 31
Gao, Huilin; Wood, Eric F.; Drusch, Matthias; McCabe, Matthew F.; 2007. Copula-Derived Observation Operators for Assimilating TMI and AMSR-E Retrieved Soil Moisture into Land Surface Models. Journal of Hydrometeorology, 8, 413–429. 10.1175/JHM570.1
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2007Model application 42
Naz, Bibi S.; Kao, Shih-Chieh; Ashfaq, Moetasim; Gao, Huilin; Rastogi, Deeksha; Gangrade, Sudershan; 2018. Effects of climate change on streamflow extremes and implications for reservoir inflow in the United States. Journal of Hydrology, 556, 359–370. 10.1016/j.jhydrol.2017.11.027
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2018Model application 49
Liu, Zhaofei; Xu, Zongxue; Fu, Guobin; Yao, Zhijun; 2013. Assessing the hydrological impacts of climate change in the headwater catchment of the Tarim River basin, China. Hydrology Research, 44, 834–849. 10.2166/nh.2012.237
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2013Model application 13
Shi, Xiaogang; Troy, Tara J.; Lettenmaier, Dennis P.; 2016. Effects of pan-Arctic snow cover and air temperature changes on soil heat content. .
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2016Model application 1
Najafi, M. R.; Moradkhani, H.; 2014. A hierarchical Bayesian approach for the analysis of climate change impact on runoff extremes: SPATIAL HIERARCHICAL BAYESIAN MODELING OF RUNOFF EXTREMES OVER PNW. Hydrological Processes, 28, 6292–6308. 10.1002/hyp.10113
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2014Model application 47
Özdoğan, M.; 2011. Climate change impacts on snow water availability in the Euphrates-Tigris basin. Hydrology and Earth System Sciences, 15, 2789–2803. 10.5194/hess-15-2789-2011
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2011Model application 36
Tatsumi, Kenichi; Yamashiki, Yosuke; 2015. Effect of irrigation water withdrawals on water and energy balance in the Mekong River Basin using an improved VIC land surface model with fewer calibration parameters. Agricultural Water Management, 159, 92–106. 10.1016/j.agwat.2015.05.011
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2015Model application 32
Wang, Junye; Li, Yumei; Bork, Edward W.; Richter, Goetz M.; Eum, Hyung-Il; Chen, Changchun; Shah, Syed Hamid Hussain; Mezbahuddin, Symon; 2020. Modelling spatio-temporal patterns of soil carbon and greenhouse gas emissions in grazing lands: Current status and prospects. Science of The Total Environment, 739, 139092. 10.1016/j.scitotenv.2020.139092
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2020Model application 15
Shi, Haiyun; Chen, Ji; Wang, Keyi; Niu, Jun; 2018. A new method and a new index for identifying socioeconomic drought events under climate change: A case study of the East River basin in China. Science of The Total Environment, 616, 363–375. 10.1016/j.scitotenv.2017.10.321
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2018Model application 55
Liu, Mingliang; Adam, Jennifer C.; Richey, Alexandra S.; Zhu, Zaichun; Myneni, Ranga B.; 2018. Factors controlling changes in evapotranspiration, runoff, and soil moisture over the conterminous U.S.: Accounting for vegetation dynamics. Journal of Hydrology, 565, 123–137. 10.1016/j.jhydrol.2018.07.068
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2018Model application 22
Elsner, Marketa M.; Gangopadhyay, Subhrendu; Pruitt, Tom; Brekke, Levi D.; Mizukami, Naoki; Clark, Martyn P.; 2014. How Does the Choice of Distributed Meteorological Data Affect Hydrologic Model Calibration and Streamflow Simulations?. Journal of Hydrometeorology, 15, 1384–1403. 10.1175/JHM-D-13-083.1
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2014Model application 40
Safeeq, Mohammad; Mauger, Guillaume S.; Grant, Gordon E.; Arismendi, Ivan; Hamlet, Alan F.; Lee, Se-Yeun; 2014. Comparing Large-Scale Hydrological Model Predictions with Observed Streamflow in the Pacific Northwest: Effects of Climate and Groundwater*. Journal of Hydrometeorology, 15, 2501–2521. 10.1175/JHM-D-13-0198.1
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2014Model application 28
Wang, Aihui; Li, Kaiyuan Y.; Lettenmaier, Dennis P.; 2008. Integration of the variable infiltration capacity model soil hydrology scheme into the community land model. Journal of Geophysical Research, 113, D09111. 10.1029/2007JD009246
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2008Model application 52
Liang, Xu; Xie, Zhenghui; 2003. Important factors in land–atmosphere interactions: surface runoff generations and interactions between surface and groundwater. Global and Planetary Change, 38, 101–114. 10.1016/S0921-8181(03)00012-2
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2003Model application 78
Zhang, Miao; Yuan, Xing; 2020. Crucial role of natural processes in detecting human influence on evapotranspiration by multisource data analysis. Journal of Hydrology, 580, 124350. 10.1016/j.jhydrol.2019.124350
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2020Model application 6
Zhang, Yuqing; You, Qinglong; Chen, Changchun; Ge, Jing; Adnan, Muhammad; 2018. Evaluation of Downscaled CMIP5 Coupled with VIC Model for Flash Drought Simulation in a Humid Subtropical Basin, China. Journal of Climate, 31, 1075–1090. 10.1175/JCLI-D-17-0378.1
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2018Model application 29
Yang, Chunlei; Yuan, Huiling; Su, Xiang; 2020. Bias correction of ensemble precipitation forecasts in the improvement of summer streamflow prediction skill. Journal of Hydrology, 588, 124955. 10.1016/j.jhydrol.2020.124955
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2020Model application 15
Zhang, Baoqing; Wu, Pute; Zhao, Xining; Wang, Yubao; Wang, Jiawen; Shi, Yinguang; 2012. Drought variation trends in different subregions of the Chinese Loess Plateau over the past four decades. Agricultural Water Management, 115, 167–177. 10.1016/j.agwat.2012.09.004
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2012Model application 52
Shi, Xiaogang; Groisman, Pavel Ya; Déry, Stephen J; Lettenmaier, Dennis P; 2011. The role of surface energy fluxes in pan-Arctic snow cover changes. Environmental Research Letters, 6, 035204. 10.1088/1748-9326/6/3/035204
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2011Model application 19
Melsen, Lieke; Teuling, Adriaan; Torfs, Paul; Zappa, Massimiliano; Mizukami, Naoki; Clark, Martyn; Uijlenhoet, Remko; 2016. Representation of spatial and temporal variability in large-domain hydrological models: case study for a mesoscale pre-Alpine basin. Hydrology and Earth System Sciences, 20, 2207–2226. 10.5194/hess-20-2207-2016
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2016Model application 71
Roy, Tirthankar; Valdés, Juan B.; Lyon, Bradfield; Demaria, Eleonora M.C.; Serrat-Capdevila, Aleix; Gupta, Hoshin V.; Valdés-Pineda, Rodrigo; Durcik, Matej; 2018. Assessing hydrological impacts of short-term climate change in the Mara River basin of East Africa. Journal of Hydrology, 566, 818–829. 10.1016/j.jhydrol.2018.08.051
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2018Model application 8
Gu, Huanghe; Yu, Zhongbo; Wang, Guiling; Wang, Jigan; Ju, Qin; Yang, Chuanguo; Fan, Chuanhao; 2015. Impact of climate change on hydrological extremes in the Yangtze River Basin, China. Stochastic Environmental Research and Risk Assessment, 29, 693–707. 10.1007/s00477-014-0957-5
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2015Model application 49
Lutz, Eric R.; Hamlet, Alan F.; Littell, Jeremy S.; 2012. Paleoreconstruction of cool season precipitation and warm season streamflow in the Pacific Northwest with applications to climate change assessments: RECONSTRUCT SEASONAL PRECIPITATION AND STREAMFLOW. Water Resources Research, 48, . 10.1029/2011WR010687
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2012Model application 21
Wu, C. H.; Huang, G. R.; Yu, H. J.; 2015. Prediction of extreme floods based on CMIP5 climate models: a case study in the Beijiang River basin, South China. Hydrology and Earth System Sciences, 19, 1385–1399. 10.5194/hess-19-1385-2015
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2015Model application 51
Guo, Jianzhong; Liang, Xu; Ruby Leung, L.; 2004. Impacts of different precipitation data sources on water budgets. Journal of Hydrology, 298, 311–334. 10.1016/j.jhydrol.2003.08.020
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2004Model application 53
Ziegler, Alan D.; Maurer, Edwin P.; Sheffield, Justin; Nijssen, Bart; 2005. Detection Time for Plausible Changes in Annual Precipitation, Evapotranspiration, and Streamflow in Three Mississippi River Sub-Basins. Climatic Change, 72, 17–36. 10.1007/s10584-005-5379-4
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2005Model application 50
Kalyanapu, Alfred J.; Hossain, A. K. M. Azad; Kim, Jinwoo; Yigzaw, Wondmagegn; Hossain, Faisal; Shum, C. K.; 2013. Toward a Methodology to Investigate the Downstream Flood Hazards on the American River due to Changes in Probable Maximum Flood due to Effects of Artificial Reservoir Size and Land-Use/Land-Cover Patterns. Earth Interactions, 17, 1–24. 10.1175/2012EI000496.1
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2013Model application 14
Mishra, Vimal; Cherkauer, Keith A.; Bowling, Laura C.; 2011. Changing thermal dynamics of lakes in the Great Lakes region: Role of ice cover feedbacks. Global and Planetary Change, 75, 155–172. 10.1016/j.gloplacha.2010.11.003
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2011Model application 32
Mei, Rui; Wang, Guiling; 2012. Summer Land–Atmosphere Coupling Strength in the United States: Comparison among Observations, Reanalysis Data, and Numerical Models. Journal of Hydrometeorology, 13, 1010–1022. 10.1175/JHM-D-11-075.1
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2012Model application 57
Liu, Yaling; Hejazi, Mohamad; Li, Hongyi; Zhang, Xuesong; Leng, Guoyong; 2018. A hydrological emulator for global applications – HE v1.0.0. Geoscientific Model Development, 11, 1077–1092. 10.5194/gmd-11-1077-2018
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2018Model application 12
Mishra, Vimal; Cherkauer, Keith A.; 2011. Influence of cold season climate variability on lakes and wetlands in the Great Lakes region. Journal of Geophysical Research, 116, D12111. 10.1029/2010JD015063
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2011Model application 8
Demaria, E.M.C.; Maurer, E.P.; Thrasher, B.; Vicuña, S.; Meza, F.J.; 2013. Climate change impacts on an alpine watershed in Chile: Do new model projections change the story?. Journal of Hydrology, 502, 128–138. 10.1016/j.jhydrol.2013.08.027
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2013Model application 52
Zhu, Bowen; Xie, Xianhong; Lu, Chuiyu; Meng, Shanshan; Yao, Yi; Wang, Yibing; 2019. Toward high-spatial resolution hydrological modeling for China: Calibrating the VIC model. Hydrology and Earth System Sciences Discussions, , 1–43. 10.5194/hess-2019-72
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2019Model application 2
Li, Zehua; Hao, Zhenchun; Shi, Xiaogang; Déry, Stephen J.; Li, Jieyou; Chen, Sichun; Li, Yongkun; 2016. An agricultural drought index to incorporate the irrigation process and reservoir operations: A case study in the Tarim River Basin. Global and Planetary Change, 143, 10–20. 10.1016/j.gloplacha.2016.05.008
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2016Model application 26
Crow, W. T.; 2003. Multiobjective calibration of land surface model evapotranspiration predictions using streamflow observations and spaceborne surface radiometric temperature retrievals. Journal of Geophysical Research, 108, 4725. 10.1029/2002JD003292
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2003Model application 80
Kang, Do Hyuk; Shi, Xiaogang; Gao, Huilin; Déry, Stephen J.; 2014. On the Changing Contribution of Snow to the Hydrology of the Fraser River Basin, Canada. Journal of Hydrometeorology, 15, 1344–1365. 10.1175/JHM-D-13-0120.1
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2014Model application 35
Tesemma, Z.K.; Wei, Y.; Peel, M.C.; Western, A.W.; 2015. The effect of year-to-year variability of leaf area index on Variable Infiltration Capacity model performance and simulation of runoff. Advances in Water Resources, 83, 310–322. 10.1016/j.advwatres.2015.07.002
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2015Model application 41
Li, Weihua; Sankarasubramanian, A.; 2012. Reducing hydrologic model uncertainty in monthly streamflow predictions using multimodel combination: HYDROLOGIC MODEL UNCERTAINTY REDUCTION. Water Resources Research, 48, . 10.1029/2011WR011380
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2012Model application 43
Zhao, Fangfang; Zhang, Lu; Chiew, Francis H.S.; Vaze, Jai; Cheng, Lei; 2013. The effect of spatial rainfall variability on water balance modelling for south-eastern Australian catchments. Journal of Hydrology, 493, 16–29. 10.1016/j.jhydrol.2013.04.028
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2013Model application 28
Chawla, I.; Mujumdar, P. P.; 2015. Isolating the impacts of land use and climate change on streamflow. Hydrology and Earth System Sciences, 19, 3633–3651. 10.5194/hess-19-3633-2015
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2015Model application 100
Lu, Xiaoliang; Zhuang, Qianlai; 2012. Modeling methane emissions from the Alaskan Yukon River basin, 1986-2005, by coupling a large-scale hydrological model and a process-based methane model: CH 4 EMISSIONS IN THE YUKON RIVER BASIN. Journal of Geophysical Research: Biogeosciences, 117, n/a–n/a. 10.1029/2011JG001843
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2012Model application 24
Najafi, Mohammad Reza; Zwiers, Francis W.; Gillett, Nathan P.; 2017. Attribution of Observed Streamflow Changes in Key British Columbia Drainage Basins. Geophysical Research Letters, 44, 11,012–11,020. 10.1002/2017GL075016
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2017Model application 21
Xue, Xianwu; Zhang, Ke; Hong, Yang; Gourley, Jonathan J.; Kellogg, Wayne; McPherson, Renee A.; Wan, Zhanming; Austin, Barney N.; 2016. New Multisite Cascading Calibration Approach for Hydrological Models: Case Study in the Red River Basin Using the VIC Model. Journal of Hydrologic Engineering, 21, 05015019. 10.1061/(ASCE)HE.1943-5584.0001282
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2016Model application 41
Niu, Jun; Chen, Ji; 2010. Terrestrial hydrological features of the Pearl River basin in South China. Journal of Hydro-environment Research, 4, 279–288. 10.1016/j.jher.2010.04.016
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2010Model application 44
Condon, L. E.; Gangopadhyay, S.; Pruitt, T.; 2015. Climate change and non-stationary flood risk for the upper Truckee River basin. Hydrology and Earth System Sciences, 19, 159–175. 10.5194/hess-19-159-2015
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2015Model application 63
Ford, Trent W.; Quiring, Steven M.; 2013. Influence of MODIS-Derived Dynamic Vegetation on VIC-Simulated Soil Moisture in Oklahoma. Journal of Hydrometeorology, 14, 1910–1921. 10.1175/JHM-D-13-037.1
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2013Model application 45
Eum, Hyung-Il; Yonas, Dibike; Prowse, Terry; 2014. Uncertainty in modelling the hydrologic responses of a large watershed: a case study of the Athabasca River basin, Canada: UNCERTAINTY IN MODELLING THE VIC HYDROLOGIC MODEL. Hydrological Processes, 28, 4272–4293. 10.1002/hyp.10230
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2014Model application 25
Zhang, J. Y.; Wang, G. Q.; Pagano, T. C.; Jin, J. L.; Liu, C. S.; He, R. M.; Liu, Y. L.; 2013. Using Hydrologic Simulation to Explore the Impacts of Climate Change on Runoff in the Huaihe River Basin of China. Journal of Hydrologic Engineering, 18, 1393–1399. 10.1061/(ASCE)HE.1943-5584.0000581
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2013Model application 30
Chin, Natalie; Byun, Kyuhyun; Hamlet, Alan F.; Cherkauer, Keith A.; 2018. Assessing potential winter weather response to climate change and implications for tourism in the U.S. Great Lakes and Midwest. Journal of Hydrology: Regional Studies, 19, 42–56. 10.1016/j.ejrh.2018.06.005
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2018Model application 20
Abdulla, Fayez A; Lettenmaier, Dennis P; 1997. Application of regional parameter estimation schemes to simulate the water balance of a large continental river. Journal of Hydrology, 197, 258–285. 10.1016/S0022-1694(96)03263-5
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1997Model application 65
Shrestha, Rajesh R.; Schnorbus, Markus A.; Werner, Arelia T.; Zwiers, Francis W.; 2014. Evaluating Hydroclimatic Change Signals from Statistically and Dynamically Downscaled GCMs and Hydrologic Models. Journal of Hydrometeorology, 15, 844–860. 10.1175/JHM-D-13-030.1
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2014Model application 35
Zhu, Chunmei; Leung, L. Ruby; Gochis, David; Qian, Yun; Lettenmaier, Dennis P.; 2009. Evaluating the influence of antecedent soil moisture on variability of the North American monsoon precipitation in the Coupled MM5/VIC Modeling System. Journal of Advances in Modeling Earth Systems, 2, 13. 10.3894/JAMES.2009.1.13
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2009Model application 29
Lei, H.; Huang, M.; Leung, L.R.; Yang, D.; Shi, X.; Mao, J.; Hayes, D.J.; Schwalm, C.R.; Wei, Y.; Liu, S. 2014. Sensitivity of global terrestrial gross primary production to hydrologic states simulated by the Community Land Model using two runoff parameterizations. Journal of Advances in Modeling Earth Systems, 6, 658–679. 10.1002/2013MS000252
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2014

Model application

47
Hu, Caihong; Guo, Shenglian; Xiong, Lihua; Peng, Dingzhi; 2005. A modified Xinanjiang model and its application in northern China. Hydrology Research, 36, 175–192. 10.2166/nh.2005.0013
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2005Model application 51
Zhang, Shiqiang; Xu, Min; Xu, Junli; Zhao, Qiudong; Hagemann, Stefan; 2013. Estimating the characteristics of runoff inflow into Lake Gojal in ungauged, highly glacierized upper Hunza River Basin, Pakistan. Journal of Earth Science, 24, 234–243. 10.1007/s12583-013-0324-3
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2013Model application 1
Miguez-Macho, Gonzalo; Li, Haibin; Fan, Ying; 2008. Simulated Water Table and Soil Moisture Climatology Over North America. Bulletin of the American Meteorological Society, 89, 663–672. 10.1175/BAMS-89-5-663
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2008Model application 54
Liu, Yangyang; Zhang, Xingnan; Xia, Dazhong; You, Jinsheng; Rong, Yanshu; Bakir, Mohamad; 2013. Impacts of Land-Use and Climate Changes on Hydrologic Processes in the Qingyi River Watershed, China. Journal of Hydrologic Engineering, 18, 1495–1512. 10.1061/(ASCE)HE.1943-5584.0000485
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2013Model application 41
Marshall, Michael; Funk, Christopher; Michaelsen, Joel; 2012. Examining evapotranspiration trends in Africa. Climate Dynamics, 38, 1849–1865. 10.1007/s00382-012-1299-y
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2012Model application 46
Su, Fengge; Xie, Zhenghui; 2003. A model for assessing effects of climate change on runoff in China *. Progress in Natural Science, 13, 701–707. 10.1080/10020070312331344270
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2003Model application 51
Mishra, Vimal; Cherkauer, Keith A.; Bowling, Laura C.; Huber, Matthew; 2011. Lake Ice phenology of small lakes: Impacts of climate variability in the Great Lakes region. Global and Planetary Change, 76, 166–185. 10.1016/j.gloplacha.2011.01.004
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2011Model application 56
Gebregiorgis, Abebe; Hossain, Faisal; 2011. How Much Can A Priori Hydrologic Model Predictability Help in Optimal Merging of Satellite Precipitation Products?. Journal of Hydrometeorology, 12, 1287–1298. 10.1175/JHM-D-10-05023.1
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2011Model application 31
Xie, Wenyi; Zeng, Xiankui; Zhang, Shuang; Wu, Jichun; Wang, Dong; Zhu, Xiaobin; 2019. Bayesian evaluation of meteorological datasets for modeling snowmelt runoff in Tizinafu watershed in Western China. Theoretical and Applied Climatology, 138, 1991–2006. 10.1007/s00704-019-02944-3
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2019Model application 2
Liu, Dedi; Guo, Shenglian; Shao, Quanxi; Liu, Pan; Xiong, Lihua; Wang, Le; Hong, Xingjun; Xu, Yao; Wang, Zhaoli; 2018. Assessing the effects of adaptation measures on optimal water resources allocation under varied water availability conditions. Journal of Hydrology, 556, 759–774. 10.1016/j.jhydrol.2017.12.002
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2018Model application 47
Yong, Bin; Ren, Liliang; Hong, Yang; Gourley, Jonathan J.; Chen, Xi; Dong, Jinwei; Wang, Weiguang; Shen, Yan; Hardy, Jill; 2013. Spatial–Temporal Changes of Water Resources in a Typical Semiarid Basin of North China over the Past 50 Years and Assessment of Possible Natural and Socioeconomic Causes. Journal of Hydrometeorology, 14, 1009–1034. 10.1175/JHM-D-12-0116.1
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2013Model application 27
Niu, J.; Chen, J.; Sivakumar, B.; 2014. Teleconnection analysis of runoff and soil moisture over the Pearl River basin in southern China. Hydrology and Earth System Sciences, 18, 1475–1492. 10.5194/hess-18-1475-2014
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2014Model application 32
Wu, Zhiyong; Lu, Guihua; Wen, Lei; Lin, Charles A.; Zhang, Jianyun; Yang, Yang; 2007. Thirty‐five year (1971–2005) simulation of daily soil moisture using the variable infiltration capacity model over China. Atmosphere-Ocean, 45, 37–45. 10.3137/ao.v450103
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2007Model application 47
Saurral, Ramiro I.; 2010. The Hydrologic Cycle of the La Plata Basin in the WCRP-CMIP3 Multimodel Dataset. Journal of Hydrometeorology, 11, 1083–1102. 10.1175/2010JHM1178.1
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2010Model application 32
Agboma, C.O.; Yirdaw, S.Z.; Snelgrove, K.R.; 2009. Intercomparison of the total storage deficit index (TSDI) over two Canadian Prairie catchments. Journal of Hydrology, 374, 351–359. 10.1016/j.jhydrol.2009.06.034
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2009Model application 33
Dibike, Yonas; Eum, Hyung-Il; Prowse, Terry; 2018. Modelling the Athabasca watershed snow response to a changing climate. Journal of Hydrology: Regional Studies, 15, 134–148. 10.1016/j.ejrh.2018.01.003
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2018Model application 30
Stampoulis, Dimitrios; Reager, John T.; David, Cédric H.; Andreadis, Konstantinos M.; Famiglietti, James S.; Farr, Tom G.; Trangsrud, Amy R.; Basilio, Ralph R.; Sabo, John L.; Osterman, Gregory B.; Lundgren, Paul R.; Liu, Zhen; 2019. Model-data fusion of hydrologic simulations and GRACE terrestrial water storage observations to estimate changes in water table depth. Advances in Water Resources, 128, 13–27. 10.1016/j.advwatres.2019.04.004
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2019Model application 8
Wi, Sungwook; Ray, Patrick; Demaria, Eleonora M.C.; Steinschneider, Scott; Brown, Casey; 2017. A user-friendly software package for VIC hydrologic model development. Environmental Modelling &amp; Software, 98, 35–53. 10.1016/j.envsoft.2017.09.006
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2017Model application 19
Acharya, Anil; Piechota, Thomas C.; Stephen, Haroon; Tootle, Glenn; 2011. Modeled streamflow response under cloud seeding in the North Platte River watershed. Journal of Hydrology, 409, 305–314. 10.1016/j.jhydrol.2011.08.027
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2011Model application 17
Islam, Siraj ul; Déry, Stephen J.; Werner, Arelia T.; 2017. Future Climate Change Impacts on Snow and Water Resources of the Fraser River Basin, British Columbia. Journal of Hydrometeorology, 18, 473–496. 10.1175/JHM-D-16-0012.1
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2017Model application 36
Niu, Jun; Chen, Ji; Wang, Keyi; Sivakumar, Bellie; 2017. Multi-scale streamflow variability responses to precipitation over the headwater catchments in southern China. Journal of Hydrology, 551, 14–28. 10.1016/j.jhydrol.2017.05.052
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2017Model application 23
Feng, Dongmei; Beighley, Edward; 2020. Identifying uncertainties in hydrologic fluxes and seasonality from hydrologic model components for climate change impact assessments. Hydrology and Earth System Sciences, 24, 2253–2267. 10.5194/hess-24-2253-2020
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2020Model application 14
Meng, Changqing; Zhou, Jianzhong; Tayyab, Muhammad; Zhu, Shuang; Zhang, Hairong; 2016. Integrating Artificial Neural Networks into the VIC Model for Rainfall-Runoff Modeling. Water, 8, 407. 10.3390/w8090407
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2016Model application 11
Gould, Gregory K.; Liu, Mingliang; Barber, Michael E.; Cherkauer, Keith A.; Robichaud, Peter R.; Adam, Jennifer C.; 2016. The effects of climate change and extreme wildfire events on runoff erosion over a mountain watershed. Journal of Hydrology, 536, 74–91. 10.1016/j.jhydrol.2016.02.025
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2016Model application 34
Zhang, Wanchang; Chen, Hao; Neale, Christopher M.; Maltese, Antonino; 2017. Modelling spatial and temporal variability of hydrologic impacts under climate changes over the Nenjiang River Basin, China. . Volume .
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2017Model application 8
Sinha, T.; Sankarasubramanian, A.; 2013. Role of climate forecasts and initial conditions in developing streamflow and soil moisture forecasts in a rainfall–runoff regime. Hydrology and Earth System Sciences, 17, 721–733. 10.5194/hess-17-721-2013
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2013Model application 40
Parada, Laura M.; 2004. Optimal multiscale Kalman filter for assimilation of near-surface soil moisture into land surface models. Journal of Geophysical Research, 109, D24109. 10.1029/2004JD004745
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2004Model application 47
Mishra, Vimal; Cherkauer, Keith A.; Bowling, Laura C.; 2010. Parameterization of Lakes and Wetlands for Energy and Water Balance Studies in the Great Lakes Region*. Journal of Hydrometeorology, 11, 1057–1082. 10.1175/2010JHM1207.1
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2010Model application 34
Polomčić, Dušan; Hajdin, Bojan; Stevanović, Zoran; Bajić, Dragoljub; Hajdin, Katarina; 2013. Groundwater management by riverbank filtration and an infiltration channel: the case of Obrenovac, Serbia. Hydrogeology Journal, 21, 1519–1530. 10.1007/s10040-013-1025-9
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2013Model application 19
Yao, Meng-Na; Yuan, Xing; 2018. Evaluation of summer drought ensemble prediction over the Yellow River basin. Atmospheric and Oceanic Science Letters, 11, 314–321. 10.1080/16742834.2018.1484253
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2018Model application 4
Tang, Chunling; Crosby, Benjamin T.; Wheaton, Joseph M.; Piechota, Thomas C.; 2012. Assessing streamflow sensitivity to temperature increases in the Salmon River Basin, Idaho. Global and Planetary Change, 88, 32–44. 10.1016/j.gloplacha.2012.03.002
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2012Model application 35
Najafi, Mohammad Reza; Zwiers, Francis; Gillett, Nathan; 2017. Attribution of the Observed Spring Snowpack Decline in British Columbia to Anthropogenic Climate Change. Journal of Climate, 30, 4113–4130. 10.1175/JCLI-D-16-0189.1
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2017Model application 30
Tang, Chunling; Piechota, Thomas C.; Chen, Dong; 2011. Relationships between oceanic–atmospheric patterns and soil moisture in the Upper Colorado River Basin. Journal of Hydrology, 411, 77–90. 10.1016/j.jhydrol.2011.09.035
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2011Model application 10
Sinha, Tushar; Cherkauer, Keith A.; Mishra, Vimal; 2010. Impacts of Historic Climate Variability on Seasonal Soil Frost in the Midwestern United States. Journal of Hydrometeorology, 11, 229–252. 10.1175/2009JHM1141.1
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2010Model application 38
Melsen, Lieke A.; Teuling, Adriaan J.; Torfs, Paul J. J. F.; Uijlenhoet, Remko; Mizukami, Naoki; Clark, Martyn P.; 2016. HESS Opinions: The need for process-based evaluation of large-domain hyper-resolution models. Hydrology and Earth System Sciences, 20, 1069–1079. 10.5194/hess-20-1069-2016
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2016Model application 56
Haddeland, Ingjerd; Matheussen, Bernt V.; Lettenmaier, Dennis P.; 2002. Influence of spatial resolution on simulated streamflow in a macroscale hydrologic model: INFLUENCE OF SPATIAL RESOLUTION. Water Resources Research, 38, 29–1-29-10. 10.1029/2001WR000854
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2002Model application 67
Parr, Dana; Wang, Guiling; Bjerklie, David; 2015. Integrating Remote Sensing Data on Evapotranspiration and Leaf Area Index with Hydrological Modeling: Impacts on Model Performance and Future Predictions. Journal of Hydrometeorology, 16, 2086–2100. 10.1175/JHM-D-15-0009.1
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2015Model application 33
Wen, Zhiqun; Liang, Xu; Yang, Shengtian; 2012. A new multiscale routing framework and its evaluation for land surface modeling applications: A NEW MULTISCALE ROUTING FRAMEWORK AND ITS EVALUATION. Water Resources Research, 48, . 10.1029/2011WR011337
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2012Model application 19
Mishra, Vimal; Shah, Harsh L.; 2018. Hydroclimatological Perspective of the Kerala Flood of 2018. Journal of the Geological Society of India, 92, 645–650. 10.1007/s12594-018-1079-3
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2018Model application 77
Fan, Yun; van den Dool, Huug M.; Wu, Wanru; 2011. Verification and Intercomparison of Multimodel Simulated Land Surface Hydrological Datasets over the United States. Journal of Hydrometeorology, 12, 531–555. 10.1175/2011JHM1317.1
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2011Model application 20
Livneh, Ben; Rajagopalan, Balaji; Kasprzyk, Joseph; 2017. Hydrological model application under data scarcity for multiple watersheds, Java Island, Indonesia. Journal of Hydrology: Regional Studies, 9, 127–139. 10.1016/j.ejrh.2016.09.007
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2017Model application 22
Ni-Meister, W.; Gao, H.; 2011. Assessing the impacts of vegetation heterogeneity on energy fluxes and snowmelt in boreal forests. Journal of Plant Ecology, 4, 37–47. 10.1093/jpe/rtr004
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2011Model application 21
Huang, Maoyi; Liang, Xu; Liang, Yao; 2003. A transferability study of model parameters for the variable infiltration capacity land surface scheme. Journal of Geophysical Research: Atmospheres, 108, 2003JD003676. 10.1029/2003JD003676
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2003Model application 37
Bennett, Katrina E.; Urrego Blanco, Jorge R.; Jonko, Alexandra; Bohn, Theodore J.; Atchley, Adam L.; Urban, Nathan M.; Middleton, Richard S.; 2018. Global Sensitivity of Simulated Water Balance Indicators Under Future Climate Change in the Colorado Basin. Water Resources Research, 54, 132–149. 10.1002/2017WR020471
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2018Model application 23
Mao, Yun; Wu, Zhiyong; He, Hai; Lu, Guihua; Xu, Huating; Lin, Qingxia; 2017. Spatio-temporal analysis of drought in a typical plain region based on the soil moisture anomaly percentage index. Science of The Total Environment, 576, 752–765. 10.1016/j.scitotenv.2016.10.116
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2017Model application 48
Minihane, M.R.; 2012. Evaluation of streamflow estimates for the Rovuma River. Physics and Chemistry of the Earth, Parts A/B/C, 50, 14–23. 10.1016/j.pce.2012.09.003
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2012Model application 5
Bartlett, M. S.; Parolari, A. J.; McDonnell, J. J.; Porporato, A.; 2017. Reply to comment by Fred L. Ogden et al. on “Beyond the SCS-CN method: A theoretical framework for spatially lumped rainfall-runoff response”: REPLY TO COMMENT BY OGDEN ET AL.. Water Resources Research, 53, 6351–6354. 10.1002/2017WR020456
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2017Model application 6
Rajagopal, Seshadri; Dominguez, Francina; Gupta, Hoshin V.; Troch, Peter A.; Castro, Christopher L.; 2014. Physical Mechanisms Related to Climate-Induced Drying of Two Semiarid Watersheds in the Southwestern United States. Journal of Hydrometeorology, 15, 1404–1418. 10.1175/JHM-D-13-0106.1
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2014Model application 7
Parr, Dana; Wang, Guiling; 2014. Hydrological changes in the U.S. Northeast using the Connecticut River Basin as a case study: Part 1. Modeling and analysis of the past. Global and Planetary Change, 122, 208–222. 10.1016/j.gloplacha.2014.08.009
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2014Model application 25
Liu, Yi; Yang, Xiaoli; Ren, Liliang; Yuan, Fei; Jiang, Shanhu; Ma, Mingwei; 2015. A New Physically Based Self-Calibrating Palmer Drought Severity Index and its Performance Evaluation. Water Resources Management, 29, 4833–4847. 10.1007/s11269-015-1093-9
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2015Model application 21
Sheffield, Justin; Ziegler, Alan D.; Wood, Eric F.; Chen, Yangbo; 2004. Correction of the High-Latitude Rain Day Anomaly in the NCEP–NCAR Reanalysis for Land Surface Hydrological Modeling. Journal of Climate, 17, 3814–3828. 10.1175/1520-0442(2004)0172.0.CO;2
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2004Model application 60
Peng, Bin; Zhao, Tianjie; Shi, Jiancheng; Xiong, Chuan; Lei, Yonghui; Ji, Dabin; Li, Dongyang; Cui, Yurong; 2015. Observation system simulation experiment for a L-band microwave radiometer over rough bare soil site: A first step towards brightness temperature assimilation. . Volume .
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2015Model application 1
Bohn, Theodore J.; Vivoni, Enrique R.; 2016. Process‐based characterization of evapotranspiration sources over the North American monsoon region. Water Resources Research, 52, 358–384. 10.1002/2015WR017934
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2016Model application 49
Wójcik, Rafał; Andreadis, Konstantinos; Tedesco, Marco; Wood, Eric; Troy, Tara; Lettenmeier, Dennis; 2008. Multimodel Estimation of Snow Microwave Emission during CLPX 2003 Using Operational Parameterization of Microphysical Snow Characteristics. Journal of Hydrometeorology, 9, 1491–1505. 10.1175/2008JHM909.1
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2008Model application 13
Parada, Laura M.; Liang, Xu; 2008. Impacts of spatial resolutions and data quality on soil moisture data assimilation. Journal of Geophysical Research, 113, D10101. 10.1029/2007JD009037
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2008Model application 19
Raje, D.; Krishnan, R.; 2012. Bayesian parameter uncertainty modeling in a macroscale hydrologic model and its impact on Indian river basin hydrology under climate change: BAYESIAN UNCERTAINTY MODELING IN MACROSCALE MODEL. Water Resources Research, 48, . 10.1029/2011WR011123
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2012Model application 38
Sivapalan, Murugesu; Woods, Ross A.; 1995. Evaluation of the effects of general circulation models' subgrid variability and patchiness of rainfall and soil moisture on land surface water balance fluxes. Hydrological Processes, 9, 697–717. 10.1002/hyp.3360090515
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1995Model application 74
Zhang, Baoqing; Wu, Pute; Zhao, Xining; Gao, Xiaodong; 2014. Spatiotemporal analysis of climate variability (1971-2010) in spring and summer on the Loess Plateau, China: CLIMATE VARIATIONS ON THE LOESS PLATEAU, CHINA. Hydrological Processes, 28, 1689–1702. 10.1002/hyp.9724
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2014Model application 31
Essawy, Bakinam T.; Goodall, Jonathan L.; Xu, Hao; Gil, Yolanda; 2017. Evaluation of the OntoSoft Ontology for describing metadata for legacy hydrologic modeling software. Environmental Modelling &amp; Software, 92, 317–329. 10.1016/j.envsoft.2017.01.024
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2017Model application 8
Zhao, Fangfang; Chiew, Francis H. S.; Zhang, Lu; Vaze, Jai; Perraud, Jean-Michel; Li, Ming; 2012. Application of a Macroscale Hydrologic Model to Estimate Streamflow across Southeast Australia. Journal of Hydrometeorology, 13, 1233–1250. 10.1175/JHM-D-11-0114.1
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2012Model application 28
Parr, Dana; Wang, Guiling; Ahmed, Kazi F.; 2015. Hydrological changes in the U.S. Northeast using the Connecticut River Basin as a case study: Part 2. Projections of the future. Global and Planetary Change, 133, 167–175. 10.1016/j.gloplacha.2015.08.011
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2015Model application 22
Raje, D.; Priya, P.; Krishnan, R.; 2014. Macroscale hydrological modelling approach for study of large scale hydrologic impacts under climate change in Indian river basins: MACROSCALE HYDROLOGICAL MODELLING IN INDIAN RIVER BASINS. Hydrological Processes, 28, 1874–1889. 10.1002/hyp.9731
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2014Model application 40
Park, Daeryong; Markus, Momcilo; 2018. A new method for establishing hydrologic fidelity of snow depth measurements based on snowmelt–runoff hydrographs. Hydrological Sciences Journal, 63, 369–385. 10.1080/02626667.2018.1438613
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2018Model application 1
Van Dusen, Peter; Rajagopalan, Balaji; Lawrence, David J.; Condon, Laura E.; Smillie, Gary; Gangopadhyay, Subhrendu; Pruitt, Tom; 2020. 21st Century flood risk projections at select sites for the U.S. National Park Service. Climate Risk Management, 28, 100211. 10.1016/j.crm.2020.100211
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2020Model application 2
Niu, Jun; Sivakumar, Bellie; Chen, Ji; 2013. Impacts of increased CO2 on the hydrologic response over the Xijiang (West River) basin, South China. Journal of Hydrology, 505, 218–227. 10.1016/j.jhydrol.2013.09.051
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2013Model application 17
Martin, Kael A.; Van Stan, John T.; Dickerson-Lange, Susan E.; Lutz, James A.; Berman, Jeffrey W.; Gersonde, Rolf; Lundquist, Jessica D.; 2013. Development and testing of a snow interceptometer to quantify canopy water storage and interception processes in the rain/snow transition zone of the North Cascades, Washington, USA: Development and Testing of Snow Interceptometer. Water Resources Research, 49, 3243–3256. 10.1002/wrcr.20271
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2013Model application 35
Zhou, Qianqian; Leng, Guoyong; Feng, Leyang; 2017. Predictability of state-level flood damage in the conterminous United States: the role of hazard, exposure and vulnerability. Scientific Reports, 7, 5354. 10.1038/s41598-017-05773-4
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2017Model application 30
Mishra, Vimal; Shah, Reepal; Azhar, Syed; Shah, Harsh; Modi, Parth; Kumar, Rohini; 2018. Reconstruction of droughts in India using multiple land-surface models (1951–2015). Hydrology and Earth System Sciences, 22, 2269–2284. 10.5194/hess-22-2269-2018
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2018Model application 66
Wu, Chuanhao; Huang, Guoru; Yu, Haijun; Chen, Zhijing; Ma, Jingguang; 2014. Impact of Climate Change on Reservoir Flood Control in the Upstream Area of the Beijiang River Basin, South China. Journal of Hydrometeorology, 15, 2203–2218. 10.1175/JHM-D-13-0181.1
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2014Model application 37
Miller, W. Paul; Butler, R. Alan; Piechota, Thomas; Prairie, James; Grantz, Katrina; DeRosa, Gina; 2012. Water Management Decisions Using Multiple Hydrologic Models within the San Juan River Basin under Changing Climate Conditions. Journal of Water Resources Planning and Management, 138, 412–420. 10.1061/(ASCE)WR.1943-5452.0000237
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2012Model application 22
Snauffer, Andrew M.; Hsieh, William W.; Cannon, Alex J.; Schnorbus, Markus A.; 2018. Improving gridded snow water equivalent products in British Columbia, Canada: multi-source data fusion by neural network models. The Cryosphere, 12, 891–905. 10.5194/tc-12-891-2018
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2018Model application 20
Wen, Lei; Lin, Charles A.; Wu, Zhiyong; Lu, Guihua; Pomeroy, John; Zhu, Yufei; 2011. Reconstructing sixty year (1950-2009) daily soil moisture over the Canadian Prairies using the Variable Infiltration Capacity model. Canadian Water Resources Journal, 36, 83–102. 10.4296/cwrj3601083
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2011Model application 23
Chen, Xiangdong; Liang, Xu; Xia, Jun; She, Dunxian; 2018. Impact of Lower Boundary Condition of Richards' Equation on Water, Energy, and Soil Carbon Based on Coupling Land Surface and Biogeochemical Models. Pedosphere, 28, 497–510. 10.1016/S1002-0160(17)60371-0
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2018Model application 4
Sridhar, V.; Billah, M.M.; Hildreth, J.W.; 2018. Coupled Surface and Groundwater Hydrological Modeling in a Changing Climate: Coupled Surface and Groundwater Hydrological Modeling in a Changing Climate. Groundwater, 56, 618–635. 10.1111/gwat.12610
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2018

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Mengelkamp, Heinz-Theo; Warrach, Kirsten; Raschke, Ehrhard; 1999. SEWAB – a parameterization of the Surface Energy and Water Balance for atmospheric and hydrologic models. Advances in Water Resources, 23, 165–175. 10.1016/S0309-1708(99)00020-2
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1999Model application 62
Zhang, ShengLei; Chen, LiangFu; Su, Lin; Jia, Li; 2015. A data assimilation-based method for optimizing parameterization schemes in a land surface process model. Science China Earth Sciences, 58, 2220–2235. 10.1007/s11430-015-5180-9
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2015Model application 1
Chawla, Ila; Mujumdar, P.P.; 2018. Partitioning uncertainty in streamflow projections under nonstationary model conditions. Advances in Water Resources, 112, 266–282. 10.1016/j.advwatres.2017.10.013
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2018Model application 32
Bao, Zhenxin; Fu, Guobin; Wang, Guoqing; Jin, Junliang; He, Ruimin; Yan, Xiaolin; Liu, Cuishan; 2012. Hydrological projection for the Miyun Reservoir basin with the impact of climate change and human activity. Quaternary International, 282, 96–103. 10.1016/j.quaint.2012.07.012
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2012Model application 24
Sridhar, Venkataramana; Jin, Xin; Jaksa, W. T. A.; 2013. Explaining the hydroclimatic variability and change in the Salmon River basin. Climate Dynamics, 40, 1921–1937. 10.1007/s00382-012-1467-0
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2013Model application 36
Kalma, J. D.; Bates, B. C.; Woods, R. A.; 1995. Predicting catchment-scale soil moisture status with limited field measurements. Hydrological Processes, 9, 445–467. 10.1002/hyp.3360090315
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1995Model application 45
Su, Jianbin; Lü, Haishen; Wang, Jianqun; Sadeghi, Ali; Zhu, Yonghua; 2017. Evaluating the Applicability of Four Latest Satellite–Gauge Combined Precipitation Estimates for Extreme Precipitation and Streamflow Predictions over the Upper Yellow River Basins in China. Remote Sensing, 9, 1176. 10.3390/rs9111176
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2017Model application 40
Huang, Jianchun; Makar, Paula; 2013. Reclamation's Research on Climate Change Impact on Reservoir Capacity. . Volume .
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2013Model application 2
Yuan, Fei; Xie, Zhenghui; Liu, Qian; Yang, Hongwei; Su, Fengge; Liang, Xu; Ren, Liliang; 2004. An application of the VIC-3L land surface model and remote sensing data in simulating streamflow for the Hanjiang River basin. Canadian Journal of Remote Sensing, 30, 680–690. 10.5589/m04-032
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2004Model application 46
Tesemma, Z. K.; Wei, Y.; Peel, M. C.; Western, A. W.; 2015. Including the dynamic relationship between climatic variables and leaf area index in a hydrological model to improve streamflow prediction under a changing climate. Hydrology and Earth System Sciences, 19, 2821–2836. 10.5194/hess-19-2821-2015
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2015Model application 17
Bonsor, H.; Shamsudduha, M.; Marchant, B.; MacDonald, A.; Taylor, R.; 2018. Seasonal and Decadal Groundwater Changes in African Sedimentary Aquifers Estimated Using GRACE Products and LSMs. Remote Sensing, 10, 904. 10.3390/rs10060904
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2018Model application 42
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2014Model application 3
Costa-Cabral, Mariza; Roy, Sujoy B.; Maurer, Edwin P.; Mills, William B.; Chen, Limin; 2013. Snowpack and runoff response to climate change in Owens Valley and Mono Lake watersheds. Climatic Change, 116, 97–109. 10.1007/s10584-012-0529-y
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2013Model application 27
Schnorbus, Markus A.; Cannon, Alex J.; 2014. Statistical emulation of streamflow projections from a distributed hydrological model: Application to CMIP3 and CMIP5 climate projections for British Columbia, Canada. Water Resources Research, 50, 8907–8926. 10.1002/2014WR015279
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2014Model application 30
Wang, Guoqing; Zhang, Jianyun; Pagano, Thomas C.; Xu, Yueping; Bao, Zhenxin; Liu, Yanli; Jin, Junliang; Liu, Cuishan; Song, Xiaomeng; Wan, Sicheng; 2016. Simulating the hydrological responses to climate change of the Xiang River basin, China. Theoretical and Applied Climatology, 124, 769–779. 10.1007/s00704-015-1467-1
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2016Model application 16
Zhou, Suoquan; Liang, Xu; Chen, Jing; Gong, Peng; 2004. An assessment of the VIC-3L hydrological model for the Yangtze River basin based on remote sensing: a case study of the Baohe River basin. Canadian Journal of Remote Sensing, 30, 840–853. 10.5589/m04-031
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2004Model application 35
Lu, Gui-Hua; Xiao, Heng; Wu, Zhi-Yong; Zhang, Si-Long; Li, Yan; 2013. Assessing the Impacts of Future Climate Change on Hydrology in Huang-Huai-Hai Region in China Using the PRECIS and VIC Models. Journal of Hydrologic Engineering, 18, 1077–1087. 10.1061/(ASCE)HE.1943-5584.0000632
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2013Model application 27
Yang, XiaoLi; Ren, LiLiang; Liu, Yi; Jiao, DongLai; Jiang, ShanHu; 2014. Hydrological response to land use and land cover changes in a sub-watershed of West Liaohe River Basin, China. Journal of Arid Land, 6, 678–689. 10.1007/s40333-014-0026-4
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2014Model application 21
Shah, Reepal; Sahai, Atul Kumar; Mishra, Vimal; 2017. Short to sub-seasonal hydrologic forecast to manage water and agricultural resources in India. Hydrology and Earth System Sciences, 21, 707–720. 10.5194/hess-21-707-2017
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2017Model application 28
Niu, Jun; Chen, Ji; 2016. A wavelet perspective on variabilities of hydrological processes in conjunction with geomorphic analysis over the Pearl River basin in South China. Journal of Hydrology, 542, 392–409. 10.1016/j.jhydrol.2016.09.017
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2016Model application 21
HENGADE, NARENDRA; ELDHO, T. I.; 2016. Assessment of LULC and climate change on the hydrology of Ashti Catchment, India using VIC model. Journal of Earth System Science, 125, 1623–1634. 10.1007/s12040-016-0753-3
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2016Model application 23
Zhang, Xingnan; Liu, Yangyang; Fang, Yuanhao; Liu, Bojuan; Xia, Dazhong; 2012. Modeling and assessing hydrologic processes for historical and potential land-cover change in the Duoyingping watershed, southwest China. Physics and Chemistry of the Earth, Parts A/B/C, 53, 19–29. 10.1016/j.pce.2011.08.021
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2012Model application 17
Zhang, Yuqing; You, Qinglong; Mao, Guangxiong; Chen, Changchun; Ye, Zhengwei; 2019. Short-term concurrent drought and heatwave frequency with 1.5 and 2.0 °C global warming in humid subtropical basins: a case study in the Gan River Basin, China. Climate Dynamics, 52, 4621–4641. 10.1007/s00382-018-4398-6
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2019Model application 38
Hillard, U; 2003. Assessing snowmelt dynamics with NASA scatterometer (NSCAT) data and a hydrologic process model. Remote Sensing of Environment, 86, 52–69. 10.1016/S0034-4257(03)00068-3
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2003Model application 27
Wang, G. Q.; Zhang, J. Y.; Pagano, T. C.; Lin, J. L.; Liu, C. S.; 2013. Identifying Contributions of Climate Change and Human Activity to Changes in Runoff Using Epoch Detection and Hydrologic Simulation. Journal of Hydrologic Engineering, 18, 1385–1392. 10.1061/(ASCE)HE.1943-5584.0000559
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2013Model application 18
Li, Jianfeng; Zhang, Lu; Shi, Xiaogang; Chen, Yongqin David; 2017. Response of long-term water availability to more extreme climate in the Pearl River Basin, China: RESPONSE OF WATER AVAILABILITY TO MORE EXTREME CLIMATE. International Journal of Climatology, 37, 3223–3237. 10.1002/joc.4910
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2017Model application 11
Nyaupane, Narayan; Thakur, Balbhadra; Kalra, Ajay; Ahmad, Sajjad; 2018. Evaluating Future Flood Scenarios Using CMIP5 Climate Projections. Water, 10, 1866. 10.3390/w10121866
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2018Model application 28
Sun, Ruochen; Yuan, Huiling; Yang, Yize; 2018. Using multiple satellite-gauge merged precipitation products ensemble for hydrologic uncertainty analysis over the Huaihe River basin. Journal of Hydrology, 566, 406–420. 10.1016/j.jhydrol.2018.09.024
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2018Model application 23
Ghazanfari, Sadegh; Pande, Saket; Hashemy, Mehdy; Sonneveld, Ben; 2013. Diagnosis of GLDAS LSM based aridity index and dryland identification. Journal of Environmental Management, 119, 162–172. 10.1016/j.jenvman.2013.01.040
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2013Model application 19
Wang, Keyi; Shi, Haiyun; Chen, Ji; Li, Tiejian; 2019. An improved operation-based reservoir scheme integrated with Variable Infiltration Capacity model for multiyear and multipurpose reservoirs. Journal of Hydrology, 571, 365–375. 10.1016/j.jhydrol.2019.02.006
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2019Model application 21
Beria, Harsh; Nanda, Trushnamayee; Singh Bisht, Deepak; Chatterjee, Chandranath; 2017. Does the GPM mission improve the systematic error component in satellite rainfall estimates over TRMM? An evaluation at a pan-India scale. Hydrology and Earth System Sciences, 21, 6117–6134. 10.5194/hess-21-6117-2017
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2017Model application 33
Bi, H Y; Ma, J W; Qin, S X; Zeng, J Y; 2014. Assimilation of microwave brightness temperatures for soil moisture estimation using particle filter. IOP Conference Series: Earth and Environmental Science, 17, 012126. 10.1088/1755-1315/17/1/012126
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2014Model application 0
Acharya, Anil; Piechota, Thomas C.; Tootle, Glenn; 2012. Quantitative Assessment of Climate Change Impacts on the Hydrology of the North Platte River Watershed, Wyoming. Journal of Hydrologic Engineering, 17, 1071–1083. 10.1061/(ASCE)HE.1943-5584.0000543
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2012Model application 18
Houle, Elizabeth S.; Livneh, Ben; Kasprzyk, Joseph R.; 2017. Exploring snow model parameter sensitivity using Sobol' variance decomposition. Environmental Modelling &amp; Software, 89, 144–158. 10.1016/j.envsoft.2016.11.024
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2017Model application 16
Srivastava, Ankur; Sahoo, Bhabagrahi; Raghuwanshi, Narendra Singh; Chatterjee, Chandranath; 2018. Modelling the dynamics of evapotranspiration using Variable Infiltration Capacity model and regionally calibrated Hargreaves approach. Irrigation Science, 36, 289–300. 10.1007/s00271-018-0583-y
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2018Model application 28
Chen, Ji; Niu, Jun; Sivakumar, Bellie; 2014. Daily anomalous high flow (DAHF) of a headwater catchment over the East River basin in South China. Journal of Hydrology, 519, 284–294. 10.1016/j.jhydrol.2014.07.023
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2014Model application 3
Sridhar, V.; Jaksa, W.T.A.; Fang, Bin; Lakshmi, Venkat; Hubbard, Kenneth G.; Jin, Xin; 2013. Evaluating Bias-Corrected AMSR-E Soil Moisture using in situ Observations and Model Estimates. Vadose Zone Journal, 12, vzj2013.05.0093. 10.2136/vzj2013.05.0093
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2013Model application 24
Qian, Ma; Zheng-Hui, Xie; Lin-Na, Zhao; 2010. Variations of Terrestrial Water Storage in the Yangtze River Basin under Climate Change Scenarios. Atmospheric and Oceanic Science Letters, 3, 293–298. 10.1080/16742834.2010.11446885
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2010Model application 7
Qin, Sixian; Ma, Jianwen; Wang, Xuanji; 2013. Development of a hierarchical Bayesian network algorithm for land surface data assimilation. International Journal of Remote Sensing, 34, 1905–1927. 10.1080/01431161.2012.727495
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2013Model application 3
Sridhar, Venkataramana; Ali, Syed Azhar; Lakshmi, Venkataraman; 2019. Assessment and validation of total water storage in the Chesapeake Bay watershed using GRACE. Journal of Hydrology: Regional Studies, 24, 100607. 10.1016/j.ejrh.2019.100607
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2019Model application 13
Wang, Guoqing; Zhang, Jianyun; Jin, Junliang; Weinberg, Josh; Bao, Zhenxin; Liu, Cuishan; Liu, Yanli; Yan, Xiaolin; Song, Xiaomeng; Zhai, Ran; 2017. Impacts of climate change on water resources in the Yellow River basin and identification of global adaptation strategies. Mitigation and Adaptation Strategies for Global Change, 22, 67–83. 10.1007/s11027-015-9664-x
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2017Model application 26
Zhong, Ruida; Zhao, Tongtiegang; He, Yanhu; Chen, Xiaohong; 2019. Hydropower change of the water tower of Asia in 21st century: A case of the Lancang River hydropower base, upper Mekong. Energy, 179, 685–696. 10.1016/j.energy.2019.05.059
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2019Model application 32
Zhang, Baoqing; Wu, Pute; Zhao, Xining; Wang, Yubao; Gao, Xiaodong; Cao, Xinchun; 2013. A drought hazard assessment index based on the VIC–PDSI model and its application on the Loess Plateau, China. Theoretical and Applied Climatology, 114, 125–138. 10.1007/s00704-012-0826-4
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2013Model application 20
Yeh, Chiou-Yueh; Shun, Chia-Tung; Kuo, Yu-Min; Jung, Chiau-Jing; Hsieh, Song-Chou; Chiu, Yen-Ling; Chen, Jeng-Wei; Hsu, Ron-Bin; Yang, Chia-Ju; Chia, Jean-San; McCormick, B. A.; 2015. Activated Human Valvular Interstitial Cells Sustain Interleukin-17 Production To Recruit Neutrophils in Infective Endocarditis. Infection and Immunity, 83, 2202–2212. 10.1128/IAI.02965-14
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2015Model application 8
Zhong, Ruida; He, Yanhu; Chen, Xiaohong; 2018. Responses of the hydrological regime to variations in meteorological factors under climate change of the Tibetan plateau. Atmospheric Research, 214, 296–310. 10.1016/j.atmosres.2018.08.008
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2018Model application 35
Meng, Lei; Quiring, Steven M.; 2010. Observational relationship of sea surface temperatures and precedent soil moisture with summer precipitation in the U.S. Great Plains: RELATIONSHIP OF SST AND SM WITH SUMMER PRECIPITATION. International Journal of Climatology, 30, 884–893. 10.1002/joc.1941
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2010Model application 25
Zhang, Yuqing; You, Qinglong; Chen, Changchun; Li, Xin; 2017. Flash droughts in a typical humid and subtropical basin: A case study in the Gan River Basin, China. Journal of Hydrology, 551, 162–176. 10.1016/j.jhydrol.2017.05.044
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2017Model application 49
Lucas‐Picher, Philippe; Arora, Vivek K.; Caya, Daniel; Laprise, René; 2003. Implementation of a large‐scale variable velocity river flow routing algorithm in the Canadian Regional Climate Model (CRCM). Atmosphere-Ocean, 41, 139–153. 10.3137/ao.410203
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2003Model application 39
Ahmadalipour, Ali; Moradkhani, Hamid; 2017. Analyzing the uncertainty of ensemble-based gridded observations in land surface simulations and drought assessment. Journal of Hydrology, 555, 557–568. 10.1016/j.jhydrol.2017.10.059
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2017Model application 24
Zhuo, L.; Han, D.; Dai, Q.; Islam, T.; 2016. A Comparative Study on SMOS and NLDAS-2 Soil Moistures Over a Hydrological Basin—With Continental Climate. In: (eds.)Satellite Soil Moisture Retrieval.. 289–308.
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2016Model application 1
Mahat, Vinod; Ramírez, Jorge A.; Brown, Thomas C.; 2017. Twenty-First-Century Climate in CMIP5 Simulations: Implications for Snow and Water Yield across the Contiguous United States. Journal of Hydrometeorology, 18, 2079–2099. 10.1175/JHM-D-16-0098.1
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2017Model application 11
Zhou, Xiong; Huang, Guohe; Piwowar, Joseph; Fan, Yurui; Wang, Xiuquan; Li, Zoe; Cheng, Guanhui; 2018. Hydrologic Impacts of Ensemble-RCM-Projected Climate Changes in the Athabasca River Basin, Canada. Journal of Hydrometeorology, 19, 1953–1971. 10.1175/JHM-D-17-0232.1
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2018Model application 13
Das, Pulakesh; Behera, Mukunda Dev; Patidar, Nitesh; Sahoo, Bhabagrahi; Tripathi, Poonam; Behera, Priti Ranjan; Srivastava, S K; Roy, Partha Sarathi; Thakur, Praveen; Agrawal, S P; Krishnamurthy, Y V N; 2018. Impact of LULC change on the runoff, base flow and evapotranspiration dynamics in eastern Indian river basins during 1985–2005 using variable infiltration capacity approach. Journal of Earth System Science, 127, 19. 10.1007/s12040-018-0921-8
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2018Model application 44
Zhang, Tao; Zhang, Xingnan; Xia, Dazhong; Liu, Yangyang; 2014. An Analysis of Land Use Change Dynamics and Its Impacts on Hydrological Processes in the Jialing River Basin. Water, 6, 3758–3782. 10.3390/w6123758
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2014Model application 35
Bohn, Theodore J.; Vivoni, Enrique R.; 2019. MOD-LSP, MODIS-based parameters for hydrologic modeling of North American land cover change. Scientific Data, 6, 144. 10.1038/s41597-019-0150-2
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2019Model application 8
Rossman, Nathan R.; Zlotnik, Vitaly A.; Rowe, Clinton M.; 2018. Using cumulative potential recharge for selection of GCM projections to force regional groundwater models: A Nebraska Sand Hills example. Journal of Hydrology, 561, 1105–1114. 10.1016/j.jhydrol.2017.09.019
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2018Model application 9
Wu, Zhiyong; Xu, Zhengguang; Wang, Fang; He, Hai; Zhou, Jianhong; Wu, Xiaotao; Liu, Zhenchen; 2018. Hydrologic Evaluation of Multi-Source Satellite Precipitation Products for the Upper Huaihe River Basin, China. Remote Sensing, 10, 840. 10.3390/rs10060840
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2018Model application 44
Zhang, Changkuan; Tang, Hongwu; Niu, Jun; Chen, Ji; 2009. Application of Vic and A Routing Scheme to Pearl River Basin in South China. In: (eds.)Advances in Water Resources and Hydraulic Engineering.. 72–76.
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2009Model application 14
Sun, Ruochen; Yuan, Huiling; Liu, Xiaoli; 2017. Effect of heteroscedasticity treatment in residual error models on model calibration and prediction uncertainty estimation. Journal of Hydrology, 554, 680–692. 10.1016/j.jhydrol.2017.09.041
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2017Model application 18
Werner, A. T.; Schnorbus, M. A.; Shrestha, R. R.; Eckstrand, H. D.; 2013. Spatial and Temporal Change in the Hydro-Climatology of the Canadian Portion of the Columbia River Basin under Multiple Emissions Scenarios. Atmosphere-Ocean, 51, 357–379. 10.1080/07055900.2013.821400
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2013Model application 19
Rhoads, Joshua; Dubayah, Ralph; Lettenmaier, Dennis; O'Donnell, Greg; Lakshmi, Venkat; 2001. Validation of land surface models using satellite-derived surface temperature. Journal of Geophysical Research: Atmospheres, 106, 20085–20099. 10.1029/2001JD900196
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2001Model application 24
Roosens, Annelies; Asadian, Mahtab; De Geyter, Nathalie; Somers, Pamela; Cornelissen, Ria; 2017. Complete Static Repopulation of Decellularized Porcine Tissues for Heart Valve Engineering: An in vitro Study. Cells Tissues Organs, 204, 270–282. 10.1159/000480660
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2017Model application 7
Kang, Hyunwoo; Sridhar, Venkataramana; Mills, Bradford F.; Hession, W. Cully; Ogejo, Jactone A.; 2019. Economy-wide climate change impacts on green water droughts based on the hydrologic simulations. Agricultural Systems, 171, 76–88. 10.1016/j.agsy.2019.01.006
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2019Model application 11
Luo, Xiangyu; Liang, Xu; McCarthy, Heather R.; 2013. VIC+ for water-limited conditions: A study of biological and hydrological processes and their interactions in soil-plant-atmosphere continuum: VIC+ FOR WATER-LIMITED CONDITIONS. Water Resources Research, 49, 7711–7732. 10.1002/2012WR012851
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2013Model application 22
Huang, Shaochun; Eisner, Stephanie; Magnusson, Jan Olof; Lussana, Cristian; Yang, Xue; Beldring, Stein; 2019. Improvements of the spatially distributed hydrological modelling using the HBV model at 1 km resolution for Norway. Journal of Hydrology, 577, 123585. 10.1016/j.jhydrol.2019.03.051
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2019Model application 19
Zhou, Yanlai; Guo, Shenglian; Xu, Chong-Yu; Chen, Hua; Guo, Jiali; Lin, Kairong; 2016. Probabilistic prediction in ungauged basins (PUB) based on regional parameter estimation and Bayesian model averaging. Hydrology Research, 47, 1087–1103. 10.2166/nh.2016.058
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2016Model application 12
Yuan, Xing; Xie, Zhenghui; Liang, Miaoling; 2009. Sensitivity of regionalized transfer-function noise models to the input and parameter transfer method / Sensibilité de modèles de type fonction de transfert bruit régionalisée (FTBR) aux données d'entrée et aux méthodes de transfert de paramètres. Hydrological Sciences Journal, 54, 639–651. 10.1623/hysj.54.3.639
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2009Model application 3
Liu, Yi; Ren, Liliang; Ma, Mingwei; Yang, Xiaoli; Yuan, Fei; Jiang, Shanhu; 2016. An insight into the Palmer drought mechanism based indices: comprehensive comparison of their strengths and limitations. Stochastic Environmental Research and Risk Assessment, 30, 119–136. 10.1007/s00477-015-1042-4
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2016Model application 17
Wang, Hejia; Xiao, Weihua; Wang, Yicheng; Zhao, Yong; Lu, Fan; Yang, Mingzhi; Hou, Baodeng; Yang, Heng; 2019. Assessment of the impact of climate change on hydropower potential in the Nanliujiang River basin of China. Energy, 167, 950–959. 10.1016/j.energy.2018.10.159
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2019Model application 24
Tesemma, Z. K.; Wei, Y.; Peel, M. C.; Western, A. W.; 2014. Effect of year-to-year variability of leaf area index on variable infiltration capacity model performance and simulation of streamflow during drought. Hydrology and Earth System Sciences Discussions, 11, 10515–10552. 10.5194/hessd-11-10515-2014
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2014Model application 6
Umair, Muhammad; Kim, Daeun; Ray, Ram L.; Choi, Minha; 2018. Estimating land surface variables and sensitivity analysis for CLM and VIC simulations using remote sensing products. Science of The Total Environment, 633, 470–483. 10.1016/j.scitotenv.2018.03.138
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2018Model application 19
O'Donnell, Greg M.; Czajkowski, Kevin P.; Dubayah, Ralph O.; Lettenmaier, Dennis P.; 2000. Macroscale hydrological modeling using remotely sensed inputs: Application to the Ohio River basin. Journal of Geophysical Research: Atmospheres, 105, 12499–12516. 10.1029/1999JD901193
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2000Model application 24
Kang, Minseok; Kwon, Hyojung; Cheon, Jung Hwa; Kim, Joon; 2012. On Estimating Wet Canopy Evaporation from Deciduous and Coniferous Forests in the Asian Monsoon Climate. Journal of Hydrometeorology, 13, 950–965. 10.1175/JHM-D-11-07.1
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2012Model application 17
Li, J.; Gao, X.; Sorooshian, S.; 2007. Modeling and Analysis of the Variability of the Water Cycle in the Upper Rio Grande Basin at High Resolution. Journal of Hydrometeorology, 8, 805–824. 10.1175/JHM602.1
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2007Model application 10
Wang, Guo-qing; Zhang, Jian-yun; Xu, Yue-ping; Bao, Zhen-xin; Yang, Xin-yue; 2017. Estimation of future water resources of Xiangjiang River Basin with VIC model under multiple climate scenarios. Water Science and Engineering, 10, 87–96. 10.1016/j.wse.2017.06.003
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2017Model application 14
Montroull, Natalia B.; Saurral, Ramiro I.; Camilloni, Inés A.; Grimson, Rafael; Vasquez, Pablo; 2013. Assessment of climate change on the future water levels of the Iberá wetlands, Argentina, during the twenty-first century. International Journal of River Basin Management, 11, 401–410. 10.1080/15715124.2013.819807
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2013Model application 7
Chousalkar, K.K.; Cheetham, B.F.; Roberts, J.R.; 2009. Effects of infectious bronchitis virus vaccine on the oviduct of hens. Vaccine, 27, 1485–1489. 10.1016/j.vaccine.2009.01.012
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2009Model application 15
Niu, Jun; Chen, Ji; 2014. Terrestrial hydrological responses to precipitation variability in Southwest China with emphasis on drought. Hydrological Sciences Journal, 59, 325–335. 10.1080/02626667.2013.822641
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2014Model application 13
Das, Jew; Umamahesh, N. V.; 2018. Spatio-Temporal Variation of Water Availability in a River Basin under CORDEX Simulated Future Projections. Water Resources Management, 32, 1399–1419. 10.1007/s11269-017-1876-2
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2018Model application 12
Bao, Z.; Liu, J.; Zhang, J.; Fu, G.; Wang, G.; Yan, X.; Zhang, A.; Xu, Q.; Shang, M.; 2011. Estimation of baseflow parameters of variable infiltration capacity model with soil and topography properties for predictions in ungauged basins. Hydrology and Earth System Sciences Discussions, 8, 7017–7053. 10.5194/hessd-8-7017-2011
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2011Model application 8
Islam, Siraj Ul; Déry, Stephen J.; 2017. Evaluating uncertainties in modelling the snow hydrology of the Fraser River Basin, British Columbia, Canada. Hydrology and Earth System Sciences, 21, 1827–1847. 10.5194/hess-21-1827-2017
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2017Model application 28
Wang, Zhaoli; Chen, Jiachao; Lai, Chengguang; Zhong, Ruida; Chen, Xiaohong; Yu, Haijun; 2018. Hydrologic assessment of the TMPA 3B42-V7 product in a typical alpine and gorge region: the Lancang River basin, China. Hydrology Research, 49, 2002–2015. 10.2166/nh.2018.024
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2018Model application 11
Gu, Haiting; Xu, Yue-Ping; Ma, Di; Xie, Jingkai; Liu, Li; Bai, Zhixu; 2020. A surrogate model for the Variable Infiltration Capacity model using deep learning artificial neural network. Journal of Hydrology, 588, 125019. 10.1016/j.jhydrol.2020.125019
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2020Model application 13
Zhang, Qiang; Li, Jianfeng; Gu, Xihui; Shi, Peijun; 2018. Is the Pearl River basin, China, drying or wetting? Seasonal variations, causes and implications. Global and Planetary Change, 166, 48–61. 10.1016/j.gloplacha.2018.04.005
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2018Model application 12
Wang, Keyi; Niu, Jun; Li, Tiejian; Zhou, Yang; 2020. Facing Water Stress in a Changing Climate: A Case Study of Drought Risk Analysis Under Future Climate Projections in the Xi River Basin, China. Frontiers in Earth Science, 8, 86. 10.3389/feart.2020.00086
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2020Model application 6
Qin, Jia; Ding, Yongjian; Han, Tianding; Liu, Yuexia; 2017. Identification of the Factors Influencing the Baseflow in the Permafrost Region of the Northeastern Qinghai-Tibet Plateau. Water, 9, 666. 10.3390/w9090666
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2017Model application 14
Huang, Shengzhi; Huang, Qiang; Chen, Yutong; 2015. Quantitative estimation on contributions of climate changes and human activities to decreasing runoff in Weihe River Basin, China. Chinese Geographical Science, 25, 569–581. 10.1007/s11769-015-0734-5
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2015Model application 16
Aggarwal, S. P.; Garg, V.; Gupta, P. K.; Nikam, B. R.; Thakur, P. K.; 2012. CLIMATE AND LULC CHANGE SCENARIOS TO STUDY ITS IMPACT ON HYDROLOGICAL REGIME. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 0, 147–152. 10.5194/isprsarchives-XXXIX-B8-147-2012
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2012Model application 18
Liu, Li; Xu, Yue Ping; Pan, Su Li; Bai, Zhi Xu; 2019. Potential application of hydrological ensemble prediction in forecasting floods and its components over the Yarlung Zangbo River basin, China. Hydrology and Earth System Sciences, 23, 3335–3352. 10.5194/hess-23-3335-2019
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2019Model application 14
Wu, Zhiyong; Chen, Xia; Lu, Guihua; Xiao, Heng; He, Hai; Zhang, Jianhua; 2017. Regional response of runoff in CMIP5 multi-model climate projections of Jiangsu Province, China. Stochastic Environmental Research and Risk Assessment, 31, 2627–2643. 10.1007/s00477-016-1349-9
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2017Model application 9
Ray, R. L.; Beighley, R. E.; Yoon, Y.; 2016. Integrating Runoff Generation and Flow Routing in Susquehanna River Basin to Characterize Key Hydrologic Processes Contributing to Maximum Annual Flood Events. Journal of Hydrologic Engineering, 21, 04016026. 10.1061/(ASCE)HE.1943-5584.0001389
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2016Model application 10
Zhou, Suoquan; Chen, Jingming; Gong, Peng; Xue, Genyuan; 2006. Effects of heterogeneous vegetation on the surface hydrological cycle. Advances in Atmospheric Sciences, 23, 391–404. 10.1007/s00376-006-0391-9
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2006Model application 5
Isenstein, Elizabeth M.; Wi, Sungwook; Ethan Yang, Y. C.; 2015. Calibration of a Distributed Hydrologic Model Using Streamflow and Remote Sensing Snow Data. . Volume .
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2015Model application 11
Zhong, Wenjie; Guo, Jing; Chen, Lu; Zhou, Jianzhong; Zhang, Junhong; Wang, Dangwei; 2020. Future hydropower generation prediction of large-scale reservoirs in the upper Yangtze River basin under climate change. Journal of Hydrology, 588, 125013. 10.1016/j.jhydrol.2020.125013
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2020Model application 28
Erlandsen, Helene Birkelund; Tallaksen, Lena Merete; Kristiansen, Jørn; 2019. Merits of novel high-resolution estimates and existing long-term estimates of humidity and incident radiation in a complex domain. Earth System Science Data, 11, 797–821. 10.5194/essd-11-797-2019
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2019Model application 3
Mazrooei, Amirhossein; Wood, Andrew W.; 2019. Variational Assimilation of Streamflow Observations in Improving Monthly Streamflow Forecasting. .
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2019Model application 1
Mao, Dazhi; Cherkauer, Keith A.; Flanagan, Dennis C.; 2010. Development of a coupled soil erosion and large-scale hydrology modeling system: COUPLED SOIL EROSION AND HYDROLOGY MODEL. Water Resources Research, 46, . 10.1029/2009WR008268
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2010Model application 9
Kang, H.; Sridhar, V.; 2019. Drought assessment with a surface-groundwater coupled model in the Chesapeake Bay watershed. Environmental Modelling &amp; Software, 119, 379–389. 10.1016/j.envsoft.2019.07.002
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2019

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10
Yang, Hongwei; Xie, Zhenghui; 2003. A new method to dynamically simulate groundwater table in land surface model VIC *. Progress in Natural Science, 13, 819–825. 10.1080/10020070312331344490
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2003Model application 15
Yang, Guoxiang; Bowling, Laura C.; 2014. Detection of changes in hydrologic system memory associated with urbanization in the Great Lakes region. Water Resources Research, 50, 3750–3763. 10.1002/2014WR015339
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2014Model application 14
Meng, Changqing; Zhou, Jianzhong; Dai, Minglong; Zhu, Shuang; Xue, Xiaoming; Ye, Lei; 2017. Variable infiltration capacity model with BGSA-based wavelet neural network. Stochastic Environmental Research and Risk Assessment, 31, 1871–1885. 10.1007/s00477-017-1413-0
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2017Model application 8
Greuell, Wouter; Franssen, Wietse H. P.; Biemans, Hester; Hutjes, Ronald W. A.; 2018. Seasonal streamflow forecasts for Europe – Part I: Hindcast verification with pseudo- and real observations. Hydrology and Earth System Sciences, 22, 3453–3472. 10.5194/hess-22-3453-2018
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2018Model application 18
Feng, D.; Beighley, E.; 2019. Identifying uncertainties in simulated streamflow from hydrologic model components for climate change impact assessments. .
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2019

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1
Malek, Keyvan; Stöckle, Claudio; Chinnayakanahalli, Kiran; Nelson, Roger; Liu, Mingliang; Rajagopalan, Kirti; Barik, Muhammad; Adam, Jennifer C.; 2017. VIC–CropSyst-v2: A regional-scale modeling platform to simulate the nexus of climate, hydrology, cropping systems, and human decisions. Geoscientific Model Development, 10, 3059–3084. 10.5194/gmd-10-3059-2017
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2017Model application 19
Grimson, Rafael; Montroull, Natalia; Saurral, Ramiro; Vasquez, Pablo; Camilloni, Inés; 2013. Hydrological modelling of the Iberá Wetlands in southeastern South America. Journal of Hydrology, 503, 47–54. 10.1016/j.jhydrol.2013.08.042
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2013Model application 10
Arora, Vivek K.; Boer, George J.; 2006. The Temporal Variability of Soil Moisture and Surface Hydrological Quantities in a Climate Model. Journal of Climate, 19, 5875–5888. 10.1175/JCLI3926.1
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2006Model application 18
Li, Rui; Shi, Jiancheng; Ji, Dabin; Zhao, Tianjie; Plermkamon, Vichian; Moukomla, Sitthisak; Kuntiyawichai, Kittiwet; Kruasilp, Jiratiwan; 2019. Evaluation and Hydrological Application of TRMM and GPM Precipitation Products in a Tropical Monsoon Basin of Thailand. Water, 11, 818. 10.3390/w11040818
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2019Model application 16
Nandi, Saswata; Reddy, M Janga; 2018. Assessing Suitability of Satellite Rainfall Data for Estimation of Daily Streamflows of a Small Tropical Catchment in India. . Volume .
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2018Model application 2
Neale, Christopher M. U.; Maltese, Antonino; Zhang, Xiaowen; Zhang, Shiqiang; Xu, Junli; 2016. Glacier stagnant in central Karakorum derived from DEOS Mass Transport Model GRACE data and one monthly degree-day model. . Volume .
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2016Model application 0
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1997

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Dang, Thanh Duc; Chowdhury, A. F. M. Kamal; Galelli, Stefano; 2020. On the representation of water reservoir storage and operations in large-scale hydrological models: implications on model parameterization and climate change impact assessments. Hydrology and Earth System Sciences, 24, 397–416. 10.5194/hess-24-397-2020
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2020Model application 53
Kim, Daeun; Ray, Ram L.; Choi, Minha; 2017. Simulations of energy balance components at snow-dominated montane watershed by land surface models. Environmental Earth Sciences, 76, 337. 10.1007/s12665-017-6655-0
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2017Model application 7
Greuell, Wouter; Franssen, Wietse H. P.; Hutjes, Ronald W. A.; 2016. Seasonal streamflow forecasts for Europe &amp;amp;#8211; II. Explanation of the skill. .
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2016Model application 5
Nikam, Bhaskar Ramchandra; Garg, Vaibhav; Jeyaprakash, Keerthiga; Gupta, Prasun Kumar; Srivastav, Sushil Kumar; Thakur, Praveen Kumar; Aggarwal, Shiv Prasad; 2018. Analyzing future water availability and hydrological extremes in the Krishna basin under changing climatic conditions. Arabian Journal of Geosciences, 11, 581. 10.1007/s12517-018-3936-1
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2018Model application 19
Anwar, Samy A.; Zakey, A.S.; Robaa, S.M.; Abdel Wahab, M. M.; 2019. The influence of two land-surface hydrology schemes on the regional climate of Africa using the RegCM4 model. Theoretical and Applied Climatology, 136, 1535–1548. 10.1007/s00704-018-2556-8
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2019Model application 12
Gao, Chao; Su, Buda; Krysanova, Valentina; Zha, Qianyu; Chen, Cai; Luo, Gang; Zeng, Xiaofan; Huang, Jinlong; Xiong, Ming; Zhang, Liping; Jiang, Tong; 2020. A 439-year simulated daily discharge dataset (1861–2299) for the upper Yangtze River, China. Earth System Science Data, 12, 387–402. 10.5194/essd-12-387-2020
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2020Model application 3
Garg, Vaibhav; Nikam, Bhaskar Ramchandra; Thakur, Praveen Kumar; Aggarwal, Shiv Prasad; Gupta, Prasun Kumar; Srivastav, Sushil Kumar; 2019. Human-induced land use land cover change and its impact on hydrology. HydroResearch, 1, 48–56. 10.1016/j.hydres.2019.06.001
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2019Model application 61
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1998Model application 13
Hengade, Narendra; Eldho, T. I.; Ghosh, Subimal; 2018. Climate change impact assessment of a river basin using CMIP5 climate models and the VIC hydrological model. Hydrological Sciences Journal, 63, 596–614. 10.1080/02626667.2018.1441531
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2018Model application 10
Lu, Guihua; Wu, Hongwei; Xiao, Heng; He, Hai; Wu, Zhiyong; 2016. Impact of Climate Change on Drought in the Upstream Yangtze River Region. Water, 8, 576. 10.3390/w8120576
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2016Model application 9
Das, Jew; Umamahesh, N. V.; 2018. Assessment of uncertainty in estimating future flood return levels under climate change. Natural Hazards, 93, 109–124. 10.1007/s11069-018-3291-2
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2018Model application 16
Lakshmi, Venkataraman; Wood, Eric F.; 1998. Diurnal cycles of evaporation using a two-layer hydrological model. Journal of Hydrology, 204, 37–51. 10.1016/S0022-1694(97)00108-X
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1998Model application 16
Wang, Lili; Cherkauer, Keith; Flanagan, Dennis; 2018. Impacts of Climate Change on Soil Erosion in the Great Lakes Region. Water, 10, 715. 10.3390/w10060715
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2018Model application 12
Kang, Hyunwoo; Sridhar, Venkataramana; 2018. Improved Drought Prediction Using Near Real-Time Climate Forecasts and Simulated Hydrologic Conditions. Sustainability, 10, 1799. 10.3390/su10061799
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2018Model application 23
Zhai, Ran; Tao, Fulu; Xu, Zhihui; 2018. Spatial–temporal changes in runoff and terrestrial ecosystem water retention under 1.5 and 2 °C warming scenarios across China. Earth System Dynamics, 9, 717–738. 10.5194/esd-9-717-2018
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2018Model application 18
Patidar, N.; Behera, M. D.; 2019. How Significantly do Land Use and Land Cover (LULC) Changes Influence the Water Balance of a River Basin? A Study in Ganga River Basin, India. Proceedings of the National Academy of Sciences, India Section A: Physical Sciences, 89, 353–365. 10.1007/s40010-017-0426-x
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2019Model application 11
Shrestha, Rajesh R.; Schnorbus, Markus A.; Cannon, Alex J.; 2015. A Dynamical Climate Model–Driven Hydrologic Prediction System for the Fraser River, Canada. Journal of Hydrometeorology, 16, 1273–1292. 10.1175/JHM-D-14-0167.1
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2015Model application 10
Curry, Charles L.; Zwiers, Francis W.; 2018. Examining controls on peak annual streamflow and floods in the Fraser River Basin of British Columbia. Hydrology and Earth System Sciences, 22, 2285–2309. 10.5194/hess-22-2285-2018
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2018Model application 17
Oliver, Howard R.; Oliver, Sylvia A.; Lettenmaier, Dennis P.; 1995. Modeling of Runoff and Streamflow at Regional to Global Scales. In: (eds.)The Role of Water and the Hydrological Cycle in Global Change.. 297–316.
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1995Model application 4
Wang, Lili; Wang, Zhonggen; Liu, Changming; Bai, Peng; Liu, Xiaocong; 2018. A Flexible Framework HydroInformatic Modeling System—HIMS. Water, 10, 962. 10.3390/w10070962
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2018Model application 6
Erbel, R; 2003. Spontaneous and interventional coronary microembolisation. Heart, 89, 986–989. 10.1136/heart.89.9.986
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2003Model application 13
Ju, Feng; An, Ru; Sun, Yaxing; 2019. Immune Evolution Particle Filter for Soil Moisture Data Assimilation. Water, 11, 211. 10.3390/w11020211
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2019Model application 7
Tang, Chunling; Dennis, Robin L.; 2014. How reliable is the offline linkage of Weather Research &amp; Forecasting Model (WRF) and Variable Infiltration Capacity (VIC) model?. Global and Planetary Change, 116, 1–9. 10.1016/j.gloplacha.2014.01.014
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2014Model application 7
Nanda, Trushnamayee; Sahoo, Bhabagrahi; Chatterjee, Chandranath; 2019. Enhancing real-time streamflow forecasts with wavelet-neural network based error-updating schemes and ECMWF meteorological predictions in Variable Infiltration Capacity model. Journal of Hydrology, 575, 890–910. 10.1016/j.jhydrol.2019.05.051
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2019Model application 19
Wu, Zhiyong; Zhou, Jianhong; He, Hai; Lin, Qingxia; Wu, Xiaotao; Xu, Zhengguang; 2018. An advanced error correction methodology for merging in-situ observed and model-based soil moisture. Journal of Hydrology, 566, 150–163. 10.1016/j.jhydrol.2018.09.018
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2018Model application 9
Guo, Jiali; Guo, Shenglian; Li, Tianyuan; 2011. Daily runoff simulation in Poyang Lake Intervening Basin based on remote sensing data. Procedia Environmental Sciences, 10, 2740–2747. 10.1016/j.proenv.2011.09.425
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2011Model application 8
Srivastava, Ankur; Deb, Proloy; Kumari, Nikul; 2020. Multi-Model Approach to Assess the Dynamics of Hydrologic Components in a Tropical Ecosystem. Water Resources Management, 34, 327–341. 10.1007/s11269-019-02452-z
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2020Model application 27
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2019Model application 8
Liu, Liu; Xu, Zongxue; Huang, Junxiong; 2009. Impact of climate change on streamflow in the Xitiaoxi catchment, Taihu Basin. Wuhan University Journal of Natural Sciences, 14, 525–531. 10.1007/s11859-009-0612-z
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2009Model application 4
Wang, Dingbao; 2018. A new probability density function for spatial distribution of soil water storage capacity leads to the SCS curve number method. Hydrology and Earth System Sciences, 22, 6567–6578. 10.5194/hess-22-6567-2018
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2018Model application 23
Greuell, Wouter; Franssen, Wietse H. P.; Hutjes, Ronald W. A.; 2019. Seasonal streamflow forecasts for Europe – Part 2: Sources of skill. Hydrology and Earth System Sciences, 23, 371–391. 10.5194/hess-23-371-2019
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2019Model application 16
Gharari, Shervan; Clark, Martyn P.; Mizukami, Naoki; Knoben, Wouter J. M.; Wong, Jefferson S.; Pietroniro, Alain; 2020. Flexible vector-based spatial configurations in land models. .
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2020Model application 15
Jiang-Hua Wu, ; Peng-Xiang Zhao, ; Nigel Roulet, ; Jonathan Seaquist, ; Chang-Hui Peng, ; 2008. Spatial Scaling Links the Information across Scales: A Review of Methodologies Used in Regional Eco-hydrological Modeling. 地球科學進展, 23, . 10018166-200802-23-2-129-141-a
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2008Model application 1
Garg, Vikas; Singh, Vijay P.; Raj, Vijay; Narendra, Hengade; Eldho, T. I.; Subimal, Ghosh; 2017. Hydrological Simulation of a Large Catchment Using the Variable Infiltration Capacity Model. In: (eds.)Development of Water Resources in India.. 19–30.
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2017Model application 4
Yang, Xiaoli; Yu, Xiaohan; Wang, Yuqian; Liu, Yi; Zhang, Mengru; Ren, Liliang; Yuan, Fei; Jiang, Shanhu; 2019. Estimating the response of hydrological regimes to future projections of precipitation and temperature over the upper Yangtze River. Atmospheric Research, 230, 104627. 10.1016/j.atmosres.2019.104627
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2019Model application 22
Hu, Hongchang; Gong, Peng; Liu, Yongxue; Wang, Genxu; Bi, Xuemei; Yang, Fengmei; E., Chongyi; 2007. Application of two hydrological models to Weihe River basin: a comparison of VIC - 3L and SWAT. . Volume .
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2007Model application 6
Liu, Yaling; Hejazi, Mohamad; Li, Hongyi; Zhang, Xuesong; Leng, Guoyong; 2017. A Hydrological Emulator for Global Applications. .
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2017Model application 4
Ray, Ram L.; Jacobs, Jennifer M.; Douglas, Ellen M.; 2018. Modeling regional landslide susceptibility using dynamic soil moisture profiles. Journal of Mountain Science, 15, 1807–1824. 10.1007/s11629-018-4896-3
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2018Model application 4
Pandey, V.; Srivastava, P. K.; 2018. INTEGRATION OF SATELLITE, GLOBAL REANALYSIS DATA AND MACROSCALE HYDROLOGICAL MODEL FOR DROUGHT ASSESSMENT IN SUB-TROPICAL REGION OF INDIA. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 0, 1347–1351. 10.5194/isprs-archives-XLII-3-1347-2018
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2018Model application 10
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2008Model application 7
Fei, Y.; Yeou-Koung, T.; Liliang, R.; 2014. A modelling framework to project future climate change impacts on streamflow variability and extremes in the West River, China. Proceedings of the International Association of Hydrological Sciences, 364, 44–50. 10.5194/piahs-364-44-2014
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2014Model application 0
Wu, Zhiyong; Xiao, Heng; Lu, Guihua; Chen, Jinming; 2015. Assessment of Climate Change Effects on Water Resources in the Yellow River Basin, China. Advances in Meteorology, 2015, 1–8. 10.1155/2015/816532
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2015Model application 7
Zhang, Linqi; Liu, Yi; Ren, Liliang; Jiang, Shanhu; Yang, Xiaoli; Yuan, Fei; Wang, Menghao; Wei, Linyong; 2019. Drought Monitoring and Evaluation by ESA CCI Soil Moisture Products Over the Yellow River Basin. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 12, 3376–3386. 10.1109/JSTARS.2019.2934732
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2019Model application 16
Jackson, Thomas J.; Chen, Jing Ming; Gong, Peng; Liang, Shunlin; Peng, Bin; Shi, Jiancheng; 2014. Dual state-parameter estimation of land surface model through assimilating microwave brightness temperature. . Volume .
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2014Model application 1
Yang, Shuai; Kang, Tingting; Bu, Jingyi; Chen, Jiahao; Wang, Zhipeng; Gao, Yanchun; 2020. Detection and Attribution of Runoff Reduction of Weihe River over Different Periods during 1961–2016. Water, 12, 1416. 10.3390/w12051416
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2020Model application 4
Mao, D.; Cherkauer, K.A.; Flanagan, D.C.; 2006. Large-Scale Impacts of Frozen Soil on Soil Erosion: Coupling the WEPP Model to a Macro-Scale Hydrologic Model. Transactions of the ASABE. Volume .
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2006

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Yan, Xiaolin; Bao, Zhenxin; Zhang, Jianyun; Wang, Guoqing; He, Ruimin; Liu, Cuishan; 2020. Quantifying contributions of climate change and local human activities to runoff decline in the upper reaches of the Luanhe River basin. Journal of Hydro-environment Research, 28, 67–74. 10.1016/j.jher.2018.11.002
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2020Model application 19
Mohaideen, M. M. Diwan; Varija, K.; 2018. Improved vegetation parameterization for hydrological model and assessment of land cover change impacts on flow regime of the Upper Bhima basin, India. Acta Geophysica, 66, 697–715. 10.1007/s11600-018-0161-y
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2018Model application 5
Liu, Yang Yang; Liu, Bo Juan; 2014. Hydrologic Responses to Climate Change in Mountainous Watershed of Southwest China, 1980 to 2010. Applied Mechanics and Materials, 675, 794–800. 10.4028/www.scientific.net/AMM.675-677.794
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2014Model application 0
Díaz, Alvaro; Maciel, Fernanda; Saurral, Ramiro; 2013. Multi-annual variability of streamflow in La Plata Basin. Part II: simulations for the twenty-first century. International Journal of River Basin Management, 11, 361–371. 10.1080/15715124.2014.880708
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2013Model application 1
Yang, Xiaoli; Zheng, Weifei; Ren, Liliang; Zhang, Mengru; Wang, Yuqian; Liu, Yi; Yuan, Fei; Jiang, Shanhu; 2018. Potential impact of climate change to the future streamflow of Yellow River Basin based on CMIP5 data. Proceedings of the International Association of Hydrological Sciences, 376, 97–104. 10.5194/piahs-376-97-2018
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2018Model application 6
Tisdall, Jm; 1985. Earthworm activity in irrigated red-brown earths used for annual crops in Victoria. Soil Research, 23, 291. 10.1071/SR9850291
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1985Model application 33
Vadrevu, Krishna Prasad; Ohara, Toshimasa; Justice, Chris; Markert, Kel N.; Griffin, Robert E.; Limaye, Ashutosh S.; McNider, Richard T.; 2018. Spatial Modeling of Land Cover/Land Use Change and Its Effects on Hydrology Within the Lower Mekong Basin. In: (eds.)Land-Atmospheric Research Applications in South and Southeast Asia.. 667–698.
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2018Model application 4
Canon-Barriga, Cesar; Valdes, Juan; Gupta, Hoshin; 2012. Modeling the Effect of Irrigation Practices in Flash Floods: A Case Study for the US Southwest. Journal of Water Resource and Protection, 4, 415–422. 10.4236/jwarp.2012.47048
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2012Model application 0
Issac, Annie Maria; Raju, P. V.; Joshi, Saksham; Rao, V. V.; 2017. Decadal Trends in Field Level Irrigation Water Requirement Estimated by Simulation of Soil Moisture Deficit. Proceedings of the National Academy of Sciences, India Section A: Physical Sciences, 87, 901–910. 10.1007/s40010-017-0458-2
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2017Model application 2
Aggarwal, S. P.; Thakur, P. K.; Garg, V.; Nikam, B. R.; Chouksey, A.; Dhote, P.; Bhattacharya, T.; 2016. WATER RESOURCES STATUS AND AVAILABILITY ASSESSMENT IN CURRENT AND FUTURE CLIMATE CHANGE SCENARIOS FOR BEAS RIVER BASIN OF NORTH WESTERN HIMALAYA. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 0, 1389–1396. 10.5194/isprs-archives-XLI-B8-1389-2016
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2016Model application 8
Ju, Feng; An, Ru; Yang, Zhen; Huang, Lijun; Sun, Yaxing; 2020. Assimilating SMOS Brightness Temperature for Hydrologic Model Parameters and Soil Moisture Estimation with an Immune Evolutionary Strategy. Remote Sensing, 12, 1556. 10.3390/rs12101556
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2020Model application 3
Fulco Ludwig, Gebre SL; 2014. Spatial and Temporal Variation of Impacts of Climate Change on the Hydrometeorology of Indus River Basin Using RCPs Scenarios, South East Asia. Journal of Earth Science &amp; Climatic Change, 5, . 10.4172/2157-7617.1000241
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2014Model application 6
Cai, Yu Lin; Xu, Juan; Li, Yang; 2012. Simulation of Hydrological Functions of Typical Vegetations in Poyang Lake Basin. Advanced Materials Research, 610, 2776–2779. 10.4028/www.scientific.net/AMR.610-613.2776
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2012Model application 0
Yue, JiaJia; Pang, Bo; Xu, ZongXue; 2016. Estimating parameters of the variable infiltration capacity model using ant colony optimization. Water Science and Technology, 74, 985–993. 10.2166/wst.2016.282
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2016Model application 0
Wu, Z.; Mao, Y.; Lu, G.; Zhang, J.; 2015. Simulation of soil moisture for typical plain region using the Variable Infiltration Capacity model. Proceedings of the International Association of Hydrological Sciences, 368, 215–220. 10.5194/piahs-368-215-2015
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2015Model application 2
Wang, Yuqian; Yang, Xiaoli; Zhang, Mengru; Zhang, Linqi; Yu, Xiaohan; Ren, Liliang; Liu, Yi; Jiang, Shanhu; Yuan, Fei; 2019. Projected Effects of Climate Change on Future Hydrological Regimes in the Upper Yangtze River Basin, China. Advances in Meteorology, 2019, 1–14. 10.1155/2019/1545746
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2019Model application 17
Behera, Soumya S.; Nikam, Bhaskar Ramchandra; Babel, Mukund S.; Garg, Vaibhav; Aggarwal, Shiv Prasad; 2019. The Assimilation of Remote Sensing-Derived Soil Moisture Data into a Hydrological Model for the Mahanadi Basin, India. Journal of the Indian Society of Remote Sensing, 47, 1357–1374. 10.1007/s12524-019-00954-2
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2019Model application 7
Joshi, S.; Abdul Hakeem, K.; Raju, P. V.; Rao, V. V.; Yadav, A.; Diwakar, P. G.; Dadhwal, V. K.; 2014. Retrospective Analysis of Recent Flood Events With Persistent High Surface Runoff From Hydrological Modelling. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 0, 359–365. 10.5194/isprsarchives-XL-8-359-2014
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2014Model application 1
Bohn, Theodore J.; Whitney, Kristen M.; Mascaro, Giuseppe; Vivoni, Enrique R.; 2019. Parameters for PITRI Precipitation Temporal Disaggregation over continental US, Mexico, and southern Canada, 1981-2013. , , . 10.5281/zenodo.2564019
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2019Model application 2
Singh, Shailesh Kumar; Dhanya, C.T.; Pradhan, Ankita; Indu, J.; 2019. Uncertainty in Calibration of Variable Infiltration Capacity Model. In: (eds.)Hydrology in a Changing World.. 89–108.
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2019Model application 3
Zhang, Zhihua; Deng, Shifan; Zhao, Qiudong; Zhang, Shiqiang; Zhang, Xiaowen; 2019. Projected glacier meltwater and river run-off changes in the Upper Reach of the Shule River Basin, north-eastern edge of the Tibetan Plateau. Hydrological Processes, 33, 1059–1074. 10.1002/hyp.13384
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2019Model application 13
Kim, Jeong-Bae; Bae, Deg-Hyo; 2020. Intensification characteristics of hydroclimatic extremes in the Asia monsoon region under 1.5 and 2.0&amp;amp;#8201;&amp;amp;#176;C of global warming. .
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2020Model application 7
Dibike, Yonas; Eum, Hyung-Il; Coulibaly, Paulin; Hartmann, Joshua; 2019. Projected Changes in the Frequency of Peak Flows along the Athabasca River: Sensitivity of Results to Statistical Methods of Analysis. Climate, 7, 88. 10.3390/cli7070088
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2019Model application 3
He, R.; Pang, B.; 2015. Sensitivity and uncertainty analysis of the Variable Infiltration Capacity model in the upstream of Heihe River basin. Proceedings of the International Association of Hydrological Sciences, 368, 312–316. 10.5194/piahs-368-312-2015
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2015Model application 7
Nasab, Aida Hashemi; Ansary, Hossein; Sanaei-Nejad, Seyed Hossein; 2018. Analyzing drought history using Fuzzy Integrated Drought Index (FIDI): a case study in the Neyshabour basin, Iran. Arabian Journal of Geosciences, 11, 390. 10.1007/s12517-018-3670-8
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2018Model application 3
Chen, Lei; Chang, Jianxia; Wang, Yimin; Peng, Shaoming; Li, Yunyun; Long, Ruihao; Wang, Yu; 2019. The regional asymmetric effect of increased daily extreme temperature on the streamflow from a multiscale perspective: A case study of the Yellow River Basin, China. Atmospheric Research, 228, 137–151. 10.1016/j.atmosres.2019.06.003
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2019Model application 3
Zhao, Linna; Qi, Dan; Tian, Fuyou; Wu, Hao; Di, Jingyue; Wang, Zhi; Li, Aihua; 2012. Probabilistic flood prediction in the upper Huaihe catchment using TIGGE data. Acta Meteorologica Sinica, 26, 62–71. 10.1007/s13351-012-0106-3
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2012Model application 2
Dang, Thanh Duc; Vu, Dung Trung; Chowdhury, A.F.M. Kamal; Galelli, Stefano; 2020. A software package for the representation and optimization of water reservoir operations in the VIC hydrologic model. Environmental Modelling &amp; Software, 126, 104673. 10.1016/j.envsoft.2020.104673
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2020Model application 21
Rai, Hiroki; Kawabata, Miku; 2020. The Dynamics of Radio-Cesium in Soils and Mechanism of Cesium Uptake Into Higher Plants: Newly Elucidated Mechanism of Cesium Uptake Into Rice Plants. Frontiers in Plant Science, 11, 528. 10.3389/fpls.2020.00528
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2020Model application 16
DiFrancesco, Kara; Gitelman, Alix; Purkey, David; 2020. Bottom-Up Assessment of Climate Risk and the Robustness of Proposed Flood Management Strategies in the American River, CA. Water, 12, 907. 10.3390/w12030907
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2020Model application 3
Sumi, Akimasa; Fukushi, Kensuke; Honda, R.; Hassan, K. M.; Ma, Shiming; Zhang, Jianyun; Zhang, Silong; Jiang, Jinhe; Xu, Yinlong; 2010. Adaptive Capacity to Changes in the Water Cycle: A Case Study of Northern China. In: (eds.)Sustainability in Food and Water.. 311–325.
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2010Model application 0
Shen, H.; Yuan, F.; Ren, L.; Ma, M.; Kong, H.; Tong, R.; 2015. Regional drought assessment using a distributed hydrological model coupled with Standardized Runoff Index. Proceedings of the International Association of Hydrological Sciences, 368, 397–402. 10.5194/piahs-368-397-2015
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2015Model application 1
Shen, H.; Ren, L.; Yuan, F.; Yang, X.; 2015. Comparative assessment of extreme climate variability and human activities on regional hydrologic droughts in the Weihe River basin, North China. Proceedings of the International Association of Hydrological Sciences, 369, 141–146. 10.5194/piahs-369-141-2015
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2015Model application 1
Anwar, Samy A.; 2019. Understanding the contribution of the vegetation-runoff system for simulating the African climate using the RegCM4 model. Theoretical and Applied Climatology, 138, 1219–1230. 10.1007/s00704-019-02885-x
(View/edit entry)
2019Model application 4
Naha, Shaini; Thakur, Praveen K.; Aggarwal, S. P.; 2016. Hydrological Modelling and data assimilation of Satellite Snow Cover Area using a Land Surface Model, VIC. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 0, 353–360. 10.5194/isprs-archives-XLI-B8-353-2016
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2016Model application 8
Acosta, J.D.R.; 2020. WATER-DRIVEN EROSION PREDICTION TECHNOLOGY FOR A MORE COMPLICATED REALITY. , , https://hammer.figshare.com/articles/WATER-DRIVEN_EROSION_PREDICTION_TECHNOLOGY_FOR_A_MORE_COMPLICATED_REALITY/12158910/1. 10.25394/PGS.12158910.V1
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2020

Model application

0
Gao, Weizhi; Wang, Zhaoli; Huang, Guoru; 2019. Spatiotemporal Variability of Actual Evapotranspiration and the Dominant Climatic Factors in the Pearl River Basin, China. Atmosphere, 10, 340. 10.3390/atmos10060340
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2019Model application 5
Khorram, Saeed; Vahedi, Mahede; 2018. Evaluating uncertainty in nonlinear hydrological models using VIC-3D model on the Umeå River basin. International Journal of Water, 12, 287. 10.1504/IJW.2018.10016229
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2018Model application 1
Victoria, Daniel de Castro; 2010. Simulação hidrológica de bacias amazônicas utilizando o modelo de Capacidade de Infiltração Variável (VIC). , , .
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2010Model application 1
پرویز, لاله; خلقی, مجید; ایران نژاد, پرویز; عراقی نژاد, شهاب; ولیزاده, خلیل; 2011. ارزیابی عملکرد مدل تلفیقی ظرفیت نفوذ متغیر و روندیابی جریان در حوضه آبریز سفید رود. آب و خاک, 25, . 10.22067/jsw.v0i0.9684
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2011Model application 0
Sridhar, V.; Elliott, R.L.; Lettenmaier, D.P.; 2002. Evaluation of VIC Model Performance using Oklahoma Surface Flux Measurements. . Volume .
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2002

Model application

0
Bartlett, M. S.; Parolari, A. J.; McDonnell, J. J.; Porporato, A.; 2016. Framework for event-based semidistributed modeling that unifies the SCS-CN method, VIC, PDM, and TOPMODEL. Water Resources Research, 52, 7036–7052. 10.1002/2016WR019084
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2016Model application 13
VanShaar, James R.; Haddeland, Ingjerd; Lettenmaier, Dennis P.; 2002. Effects of land-cover changes on the hydrological response of interior Columbia River basin forested catchments. Hydrological Processes, 16, 2499–2520. 10.1002/hyp.1017
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2002

Model application

113
Hernández, Felipe; Liang, Xu; 2017. Hybridizing Bayesian and variational data assimilation for robust high-resolution hydrologic forecasting. .
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2017

Model application

2
Stewart, J. R.; Livneh, B.; Kasprzyk, J. R.; Rajagopalan, B.; Minear, J. T.; Raseman, W. J.; 2017. A Multialgorithm Approach to Land Surface Modeling of Suspended Sediment in the Colorado Front Range: MULTI-PHYSICS SEDIMENT MODELING. Journal of Advances in Modeling Earth Systems, 9, 2526–2544. 10.1002/2017MS001120
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2017

Model application

3
Tong, Kai; Su, Fengge; Xu, Baiqing; 2016. Quantifying the contribution of glacier meltwater in the expansion of the largest lake in Tibet: GLACIER CONTRIBUTION IN LAKE EXPANSION. Journal of Geophysical Research: Atmospheres, 121, 11,158–11,173. 10.1002/2016JD025424
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2016Model application 41
Xu, Lei; Abbaszadeh, Peyman; Moradkhani, Hamid; Chen, Nengcheng; Zhang, Xiang; 2020. Continental drought monitoring using satellite soil moisture, data assimilation and an integrated drought index. Remote Sensing of Environment, 250, 112028. 10.1016/j.rse.2020.112028
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2020Model application 45
Yun, Xiaobo; Tang, Qiuhong; Wang, Jie; Liu, Xingcai; Zhang, Yongqiang; Lu, Hui; Wang, Yueling; Zhang, Lu; Chen, Deliang; 2020. Impacts of climate change and reservoir operation on streamflow and flood characteristics in the Lancang-Mekong River Basin. Journal of Hydrology, 590, 125472. 10.1016/j.jhydrol.2020.125472
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2020Model application 28
Wei, Zhongwang; He, Xiaogang; Zhang, Yonggen; Pan, Ming; Sheffield, Justin; Peng, Liqing; Yamazaki, Dai; Moiz, Abdul; Liu, Yaping; Ikeuchi, Koji; 2020. Identification of uncertainty sources in quasi-global discharge and inundation simulations using satellite-based precipitation products. Journal of Hydrology, 589, 125180. 10.1016/j.jhydrol.2020.125180
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2020Model application 7
Miao, Yue; Wang, Aihui; 2020. A daily 0.25° × 0.25° hydrologically based land surface flux dataset for conterminous China, 1961–2017. Journal of Hydrology, 590, 125413. 10.1016/j.jhydrol.2020.125413
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2020Model application 3
Chen, Fangliang; Yuan, Huiling; Sun, Ruochen; Yang, Chunlei; 2020. Streamflow simulations using error correction ensembles of satellite rainfall products over the Huaihe river basin. Journal of Hydrology, 589, 125179. 10.1016/j.jhydrol.2020.125179
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2020Model application 10
Stephen, H.; Ahmad, S.; Piechota, T. C.; Tang, C.; 2010. Relating surface backscatter response from TRMM precipitation radar to soil moisture: results over a semi-arid region. Hydrology and Earth System Sciences, 14, 193–204. 10.5194/hess-14-193-2010
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2010Model application 58
Pierce, D. W.; Westerling, A. L.; Oyler, J.; 2013. Future humidity trends over the western United States in the CMIP5 global climate models and variable infiltration capacity hydrological modeling system. Hydrology and Earth System Sciences, 17, 1833–1850. 10.5194/hess-17-1833-2013
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2013Model application 47
Addor, N.; Melsen, L. A.; 2019. Legacy, Rather Than Adequacy, Drives the Selection of Hydrological Models. Water Resources Research, 55, 378–390. 10.1029/2018WR022958
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2019Model application 91
Terink, W.; Hurkmans, R. T. W. L.; Torfs, P. J. J. F.; Uijlenhoet, R.; 2009. Bias correction of temperature and precipitation data for regional climate model application to the Rhine basin. Hydrology and Earth System Sciences Discussions, 6, 5377–5413. 10.5194/hessd-6-5377-2009
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2009Model application 44
Alvarenga, Lívia Alves; Carvalho, Vinícius Siqueira Oliveira; Oliveira, Vinícius Augusto de; Mello, Carlos Rogério de; Colombo, Alberto; Tomasella, Javier; Melo, Pâmela Aparecida; 2020. Hydrological simulation with SWAT and VIC Models in the Verde River Watershed, Minas Gerais. Ambiente e Agua - An Interdisciplinary Journal of Applied Science, 15, 1. 10.4136/ambi-agua.2492
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2020Model application 4
Xie, Kang; Liu, Pan; Zhang, Jianyun; Wang, Guoqing; Zhang, Xiaojing; Zhou, Liting; 2020. Identification of spatially distributed parameters of hydrological models using the dimension-adaptive key grid calibration strategy. Journal of Hydrology, , 125772. 10.1016/j.jhydrol.2020.125772
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2020Model application 8
Shen, Youjiang; Liu, Dedi; Yin, Jiabo; Xiong, Lihua; Liu, Pan; 2020. Integrating hybrid runoff generation mechanism into variable infiltration capacity model to facilitate hydrological simulations. Stochastic Environmental Research and Risk Assessment, 34, 2139–2157. 10.1007/s00477-020-01878-x
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2020Model application 3
Lv, Meizhao; Lu, Hui; Yang, Kun; Xu, Zhongfeng; Lv, Meixia; Huang, Xiaomeng; 2018. Assessment of Runoff Components Simulated by GLDAS against UNH–GRDC Dataset at Global and Hemispheric Scales. Water, 10, 969. 10.3390/w10080969
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2018Model application 12
Yeste, Patricio; García-Valdecasas Ojeda, Matilde; Gámiz-Fortis, Sonia R.; Castro-Díez, Yolanda; Esteban-Parra, María Jesús; 2020. Integrated sensitivity analysis of a macroscale hydrologic model in the north of the Iberian Peninsula. Journal of Hydrology, 590, 125230. 10.1016/j.jhydrol.2020.125230
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2020Model application 11
Wu, Liyu; Zhang, Xuan; Hao, Fanghua; Wu, Yifan; Li, Chong; Xu, Yang; 2020. Evaluating the contributions of climate change and human activities to runoff in typical semi-arid area, China. Journal of Hydrology, 590, 125555. 10.1016/j.jhydrol.2020.125555
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2020Model application 14
Srivastava, Ankur; Kumari, Nikul; Maza, Minotshing; 2020. Hydrological Response to Agricultural Land Use Heterogeneity Using Variable Infiltration Capacity Model. Water Resources Management, , . 10.1007/s11269-020-02630-4
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2020Model application 45
Bharat, Shalinee; Mishra, Vimal; 2020. Runoff sensitivity of Indian sub-continental river basins. Science of The Total Environment, , 142642. 10.1016/j.scitotenv.2020.142642
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2020Model application 4
Maza, Minotshing; Srivastava, Ankur; Bisht, Deepak Singh; Raghuwanshi, Narendra Singh; Bandyopadhyay, Arnab; Chatterjee, Chandranath; Bhadra, Aditi; 2020. Simulating hydrological response of a monsoon dominated reservoir catchment and command with heterogeneous cropping pattern using VIC model. Journal of Earth System Science, 129, 200. 10.1007/s12040-020-01468-z
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2020Model application 10
Ran, Hui; Li, Jing; Zhou, Zixiang; Zhang, Cheng; Tang, Chengyan; Yu, Yuyang; 2020. Predicting the spatiotemporal characteristics of flash droughts with downscaled CMIP5 models in the Jinghe River basin of China. Environmental Science and Pollution Research, 27, 40370–40382. 10.1007/s11356-020-10036-3
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2020Model application 3
Singh Jasrotia, Avtar; Baru, Deepika; Kour, Retinder; Ahmad, Suhail; Kour, Kuljit; 2021. Hydrological modeling to simulate stream flow under changing climate conditions in Jhelum catchment, western Himalaya. Journal of Hydrology, 593, 125887. 10.1016/j.jhydrol.2020.125887
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2021Model application 11
Nandi, Saswata; Manne, Janga Reddy; 2020. Spatiotemporal Analysis of Water Balance Components and Their Projected Changes in Near-future Under Climate Change Over Sina Basin, India. Water Resources Management, 34, 2657–2675. 10.1007/s11269-020-02551-2
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2020Model application 5
Mahto, Shanti Shwarup; Mishra, Vimal; 2020. Dominance of summer monsoon flash droughts in India. Environmental Research Letters, 15, 104061. 10.1088/1748-9326/abaf1d
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2020Model application 21
Bhattacharya, Tanmoyee; Khare, Deepak; Arora, Manohar; 2020. Evaluation of reanalysis and global meteorological products in Beas river basin of North-Western Himalaya. Environmental Systems Research, 9, 24. 10.1186/s40068-020-00186-1
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2020Model application 6
Sainz de la Maza, M.; Del Jesus, M.; 2020. Análisis de sequías históricas a través de los impactos derivados. Ingeniería del agua, 24, 141. 10.4995/ia.2020.12182
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2020Model application 2
Priya, P; Krishnan, R; Mujumdar, Milind; 2020. Uncertainties in river discharge simulations of the upper Indus basin in the Western Himalayas. Journal of Earth System Science, 129, 150. 10.1007/s12040-020-01409-w
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2020Model application 1
Sharma, V.; Nikam, B. R.; Thakur, P. K.; Garg, V.; Aggarwal, S. P.; Srivastav, S. K.; Chauhan, P.; 2020. ESTIMATION OF HYDRO-METEOROLOGICAL EXTREMES IN BEAS BASIN OVER HISTORIC, PRESENT AND FUTURE SCENARIO. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 0, 139–147. 10.5194/isprs-archives-XLIII-B5-2020-139-2020
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2020Model application 0
Wang, Yuan; Zheng, Wengang; Xie, Hongwei; Liu, Qi; Wei, Jiahua; 2020. Study on Runoff Simulation of the Source Region of the Yellow River and the Inland Arid Source Region Based on the Variable Infiltration Capacity Model. Sustainability, 12, 7041. 10.3390/su12177041
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2020Model application 0
Zhu, Bin; Huang, Yuhan; Zhang, Zengxin; Kong, Rui; Tian, Jiaxi; Zhou, Yichen; Chen, Sheng; Duan, Zheng; 2020. Evaluation of TMPA Satellite Precipitation in Driving VIC Hydrological Model over the Upper Yangtze River Basin. Water, 12, 3230. 10.3390/w12113230
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2020Model application 6
So, Jae-Min; Lee, Joo-Heon; Bae, Deg-Hyo; 2020. Development of a Hydrological Drought Forecasting Model Using Weather Forecasting Data from GloSea5. Water, 12, 2785. 10.3390/w12102785
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2020Model application 2
Anwar, Samy A.; 2021. On the contribution of dynamic leaf area index in simulating the African climate using a regional climate model (RegCM4). Theoretical and Applied Climatology, 143, 119–129. 10.1007/s00704-020-03414-x
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2021Model application 6
Joshi, Saksham; Pokkuluri, Venkat Raju; Issac, Annie; Rao, Venkateshwar; Rao, Pamaraju Venkata; Dhadwal, Vinay; 2020. Applications of Hydrological Model Simulated Long Term Water Balance Components for India. .
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2020Model application 0
, ; 2016. Effects of Climate Change on Hydrology of the Nueces River Basin in South Texas. . Volume .
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2016Model application 1
Dash, Sonam Sandeep; Sahoo, Bhabagrahi; Raghuwanshi, Narendra Singh; 2021. How reliable are the evapotranspiration estimates by Soil and Water Assessment Tool (SWAT) and Variable Infiltration Capacity (VIC) models for catchment-scale drought assessment and irrigation planning?. Journal of Hydrology, 592, 125838. 10.1016/j.jhydrol.2020.125838
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2021Model application 22
Pradhan, Ankita; Nair, Akhilesh S.; Indu, J.; Kirstetter, Pierre-Emmanuel; 2021. Impact of sampling of GPM orbital data on streamflow simulations. Journal of Hydrology, 593, 125798. 10.1016/j.jhydrol.2020.125798
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2021Model application 4
Hossain, Md Zakir; Nikam, Bhaskar Ramchandra; Srivastav, Sushil Kumar; Gupta, Prasun Kumar; 2021. Estimating groundwater resource and understanding recharge processes in the rapidly urbanizing Dhaka City, Bangladesh. Groundwater for Sustainable Development, 12, 100514. 10.1016/j.gsd.2020.100514
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2021Model application 4
Zhang, Yuliang; Wu, Zhiyong; Singh, Vijay P.; He, Hai; He, Jian; Yin, Hao; Zhang, Yaxin; 2021. Coupled hydrology-crop growth model incorporating an improved evapotranspiration module. Agricultural Water Management, 246, 106691. 10.1016/j.agwat.2020.106691
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2021Model application 9
Horan, Robyn; Gowri, R; Wable, Pawan S.; Baron, Helen; Keller, Virginie D. J.; Garg, Kaushal K.; Mujumdar, Pradeep P.; Houghton-Carr, Helen; Rees, Gwyn; 2021. A Comparative Assessment of Hydrological Models in the Upper Cauvery Catchment. Water, 13, 151. 10.3390/w13020151
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2021Model application 7
Li, Rui; Shi, Jiancheng; Ji, Dabin; Zhao, Tianjie; Moukomla, Sitthisak; Plermkamon, Vichian; Lei, Yonghui; Pan, Jinmei; Jia, Huicong; Yang, Aqiang; 2020. The Application of Remote Sensing Precipitation Products for Runoff Modelling and Flood Inundation Area Estimation in Typical Monsoon Basins of Indochina Peninsula. . Volume .
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2020Model application 0
Oubeidillah, Abdoul; Tootle, Glenn; Lakshmi, Venkat; 2020. IMPACTS OF BEETLE KILL ON MODELED STREAMFLOW RESPONSE IN THE NORTH PLATTE RIVER BASIN. International Journal of Engineering Technologies and Management Research, 6, 27–39. 10.29121/ijetmr.v6.i3.2019.363
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2020Model application 0
Coats, Robert; Lewis, Jack; Schladow, Geoffrey; 2021. Projected climate change impacts in the Tahoe Basin: Recent findings from global climate models. Quaternary International, , S1040618221000161. 10.1016/j.quaint.2021.01.006
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2021Model application 1
Dahri, Zakir Hussain; Ludwig, Fulco; Moors, Eddy; Ahmad, Shakil; Ahmad, Bashir; Ahmad, Sarfraz; Riaz, Muhammad; Kabat, Pavel; 2021. Climate change and hydrological regime of the high-altitude Indus basin under extreme climate scenarios. Science of The Total Environment, 768, 144467. 10.1016/j.scitotenv.2020.144467
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2021

Model application

19
Yeste, Patricio; Rosa-Cánovas, Juan José; Romero-Jiménez, Emilio; García-Valdecasas Ojeda, Matilde; Gámiz-Fortis, Sonia R.; Castro-Díez, Yolanda; Esteban-Parra, María Jesús; 2021. Projected hydrologic changes over the north of the Iberian Peninsula using a Euro-CORDEX multi-model ensemble. Science of The Total Environment, 777, 146126. 10.1016/j.scitotenv.2021.146126
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2021

Model application

1
Brunner, Manuela I.; Melsen, Lieke A.; Wood, Andrew W.; Rakovec, Oldrich; Mizukami, Naoki; Knoben, Wouter J. M.; Clark, Martyn P.; 2021. Flood spatial coherence, triggers, and performance in hydrological simulations: large-sample evaluation of four streamflow-calibrated models. Hydrology and Earth System Sciences, 25, 105–119. 10.5194/hess-25-105-2021
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2021Model application 9
Fernández, Bonifacio; Gironás, Jorge; Vásquez, Nicolás; Cepeda, Javier; Gómez, Tomás; Mendoza, Pablo A.; Lagos, Miguel; Boisier, Juan Pablo; Álvarez-Garretón, Camila; Vargas, Ximena; 2021. Catchment-Scale Natural Water Balance in Chile. In: (eds.)Water Resources of Chile.. 189–208.
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2021Model application 3
Pandey, Ashish; Mishra, S.K.; Kansal, M.L.; Singh, R.D.; Singh, V.P.; Nandi, Saswata; Janga Reddy, Manne; 2021. Parameter Estimation of a Macroscale Hydrological Model Using an Adaptive Differential Evolution. In: (eds.)Water Management and Water Governance.. 243–255.
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2021Model application 0
Pandey, Varsha; Srivastava, Prashant K.; Das, Pulakesh; Behera, Mukunda Dev; 2021. Irrigation water demand estimation in Bundelkhand region using the variable infiltration capacity model. In: (eds.)Agricultural Water Management.. 331–347.
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2021Model application 1
Heidari, Hadi; Warziniack, Travis; Brown, Thomas C.; Arabi, Mazdak; 2021. Impacts of Climate Change on Hydroclimatic Conditions of U.S. National Forests and Grasslands. Forests, 12, 139. 10.3390/f12020139
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2021Model application 16
Scheidegger, Johanna M.; Jackson, Christopher R.; Muddu, Sekhar; Tomer, Sat Kumar; Filgueira, Rosa; 2021. Integration of 2D Lateral Groundwater Flow into the Variable Infiltration Capacity (VIC) Model and Effects on Simulated Fluxes for Different Grid Resolutions and Aquifer Diffusivities. Water, 13, 663. 10.3390/w13050663
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2021Model application 8
Mahmoud, Mohammed; 2003. Evaluating the usefulness of soil moisture (forecasts) in streamflow prediction for central Texas. Dissertations, Master's Theses and Master's Reports - Open, , . 10.37099/mtu.dc.etds/256
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2003Model application 0
Sun, Ruochen; Hernández, Felipe; Liang, Xu; Yuan, Huiling; 2020. A Calibration Framework for High‐Resolution Hydrological Models Using a Multiresolution and Heterogeneous Strategy. Water Resources Research, 56, . 10.1029/2019WR026541
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2020

Model application

5
Xiao, Mu; Mahanama, Sarith P.; Xue, Yongkang; Chen, Fei; Lettenmaier, Dennis P.; 2021. Modeling Snow Ablation over the Mountains of the Western United States: Patterns and Controlling Factors. Journal of Hydrometeorology, 22, 297–311. 10.1175/JHM-D-19-0198.1
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2021Model application 5
Wang, Xuejia; Chen, Deliang; Pang, Guojin; Anwar, Samy A.; Ou, Tinghai; Yang, Meixue; 2021. Effects of cumulus parameterization and land-surface hydrology schemes on Tibetan Plateau climate simulation during the wet season: insights from the RegCM4 model. Climate Dynamics, , . 10.1007/s00382-021-05781-1
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2021Model application 8
Anwar, Samy A.; Diallo, Ismaila; 2021. On the role of a coupled vegetation-runoff system in simulating the tropical African climate: a regional climate model sensitivity study. Theoretical and Applied Climatology, 145, 313–325. 10.1007/s00704-021-03627-8
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2021Model application 4
Jiang, Shanhu; Zhou, Le; Ren, Liliang; Wang, Menghao; Xu, Chong-Yu; Yuan, Fei; Liu, Yi; Yang, Xiaoli; Ding, Yu; 2021. Development of a comprehensive framework for quantifying the impacts of climate change and human activities on river hydrological health variation. Journal of Hydrology, 600, 126566. 10.1016/j.jhydrol.2021.126566
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2021Model application 6
Xu, Kai; Wu, Chuanhao; Zhang, Ce; Hu, Bill X.; 2021. Uncertainty assessment of drought characteristics projections in humid subtropical basins in China based on multiple CMIP5 models and different index definitions. Journal of Hydrology, 600, 126502. 10.1016/j.jhydrol.2021.126502
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2021Model application 6
Luong, Nguyen Duc; Hiep, Nguyen Hoang; Bui, Thi Hieu; 2021. Investigating the Spatio-Temporal Variation of Soil Moisture and Agricultural Drought towards Supporting Water Resources Management in the Red River Basin of Vietnam. Sustainability, 13, 4926. 10.3390/su13094926
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2021Model application 2
Yao, Yuan; Qu, Wei; Lu, Jingxuan; Cheng, Hui; Pang, Zhiguo; Lei, Tianjie; Tan, Yanan; 2021. Responses of Hydrological Processes under Different Shared Socioeconomic Pathway Scenarios in the Huaihe River Basin, China. Water, 13, 1053. 10.3390/w13081053
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2021Model application 5
Schaperow, Jacob R.; Li, Dongyue; Margulis, Steven A.; Lettenmaier, Dennis P.; 2021. A near-global, high resolution land surface parameter dataset for the variable infiltration capacity model. Scientific Data, 8, 216. 10.1038/s41597-021-00999-4
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2021Model application 1
Anwar, Samy A.; Diallo, Ismaila; 2021. A RCM investigation of the influence of vegetation status and runoff scheme on the summer gross primary production of Tropical Africa. Theoretical and Applied Climatology, 145, 1407–1420. 10.1007/s00704-021-03667-0
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2021Model application 3
Mazrooei, Amir; Sankarasubramanian, A.; Wood, Andrew W.; 2021. Potential in improving monthly streamflow forecasting through variational assimilation of observed streamflow. Journal of Hydrology, 600, 126559. 10.1016/j.jhydrol.2021.126559
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2021Model application 2
Kumari, Nikul; Srivastava, Ankur; Sahoo, Bhabagrahi; Raghuwanshi, Narendra Singh; Bretreger, David; 2021. Identification of Suitable Hydrological Models for Streamflow Assessment in the Kangsabati River Basin, India, by Using Different Model Selection Scores. Natural Resources Research, , . 10.1007/s11053-021-09919-0
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2021Model application 20
Mohanasundaram, S.; Mekonnen, Mesfin M.; Haacker, Erin; Ray, Chittaranjan; Lim, Sokneth; Shrestha, Sangam; 2021. An application of GRACE mission datasets for streamflow and baseflow estimation in the Conterminous United States basins. Journal of Hydrology, 601, 126622. 10.1016/j.jhydrol.2021.126622
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2021Model application 1
Shadkam, Somayeh; 2017. Preserving Urmia Lake in a changing world : reconciling anthropogenic and climate drivers by hydrological modelling and policy assessment. , , .
(View/edit entry)
2017Model application 5
Jha, Ramakar; Singh, Vijay P.; Singh, Vivekanand; Roy, L. B.; Thendiyath, Roshni; Nandi, Saswata; Reddy, M. Janga; 2021. Multiobjective Automatic Calibration of a Physically Based Hydrologic Model Using Multiobjective Self-Adaptive Differential Evolution Algorithm. In: (eds.)Climate Change Impacts on Water Resources.. 435–448.
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2021Model application 0
Xu, Zheng-guang; Wu, Zhi-yong; He, Hai; Guo, Xiao; Zhang, Yu-liang; 2021. Comparison of soil moisture at different depths for drought monitoring based on improved soil moisture anomaly percentage index. Water Science and Engineering, 14, 171–183. 10.1016/j.wse.2021.08.008
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2021Model application 4
qingling, bao; jianli, ding; jie, liu; lijie, han; yinghui, wang; 2021. Streamflow and its components in Ebinur basin: decoupling of anthropogenic and climatic elements. .
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2021Model application 0
Uijttewaal, Wim; J. Franca, Mário; Valero, Daniel; Chavarrias, Victor; Ylla Arbós, Clàudia; Schielen, Ralph; Crosato, Alessandra; Lytle, S.E.; Tavakoly, A.A.; Yeates, E.; Lewis, J.; 2020. Analyzing future extreme floods for the Mississippi River Basin. In: (eds.)River Flow 2020.. 2059–2066.
(View/edit entry)
2020Model application 0
Acharya, Anil; 2011. Impacts of climate change and weather modification on hydrologic characteristics of watersheds in the western United States. , , .
(View/edit entry)
2011Model application 1
Wang, Jie; Tang, Qiuhong; Chen, Aifang; Tang, Yin; Xu, Ximeng; Yun, Xiaobo; Mu, Mengfei; Wright, Nigel; Chen, Deliang; 2022. Impacts of Summer Monsoons on flood characteristics in the Lancang-Mekong River Basin. Journal of Hydrology, 604, 127256. 10.1016/j.jhydrol.2021.127256
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2022

Model application

3
Wang, Ning; Liu, Wenbin; Wang, Hong; Sun, Fubao; Duan, Weili; Li, Zehua; Li, Zhi; Chen, Yaning; 2021. Improving streamflow and flood simulations in three headwater catchments of the Tarim River based on a coupled glacier-hydrological model. Journal of Hydrology, 603, 127048. 10.1016/j.jhydrol.2021.127048
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2021

Model application

4
Lievens, H.; Al Bitar, A.; Verhoest, N. E. C.; Cabot, F.; De Lannoy, G. J. M.; Drusch, M.; Dumedah, G.; Hendricks Franssen, H.-J.; Kerr, Y.; Tomer, S. K.; Martens, B.; Merlin, O.; Pan, M.; van den Berg, M. J.; Vereecken, H.; Walker, J. P.; Wood, E. F.; Pauwels, V. R. N.; 2015. Optimization of a Radiative Transfer Forward Operator for Simulating SMOS Brightness Temperatures over the Upper Mississippi Basin. Journal of Hydrometeorology, 16, 1109–1134. 10.1175/JHM-D-14-0052.1
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2015

Model application

27
Meng, Xianyong; Wang, Hao; Shi, Chunxiang; Wu, Yiping; Ji, Xiaonan; 2018. Establishment and Evaluation of the China Meteorological Assimilation Driving Datasets for the SWAT Model (CMADS). Water, 10, 1555. 10.3390/w10111555
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2018

Model application

37
Zhu, Ye; Liu, Yi; Ma, Xieyao; Ren, Liliang; Singh, Vijay; 2018. Drought Analysis in the Yellow River Basin Based on a Short-Scalar Palmer Drought Severity Index. Water, 10, 1526. 10.3390/w10111526
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2018

Model application

23
Anwar, Samy A.; Mamadou, Ossénatou; Diallo, Ismaila; Sylla, Mouhamadou Bamba; 2021. On the Influence of Vegetation Cover Changes and Vegetation-Runoff Systems on the Simulated Summer Potential Evapotranspiration of Tropical Africa Using RegCM4. Earth Systems and Environment, 5, 883–897. 10.1007/s41748-021-00252-3
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2021

Model application

9
Ali, Syed A.; Sridhar, Venkataramana; 2019. Deriving the Reservoir Conditions for Better Water Resource Management Using Satellite-Based Earth Observations in the Lower Mekong River Basin. Remote Sensing, 11, 2872. 10.3390/rs11232872
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2019

Model application

10
Okay Ahi, Gonca; Jin, Shuanggen; 2019. Hydrologic Mass Changes and Their Implications in Mediterranean-Climate Turkey from GRACE Measurements. Remote Sensing, 11, 120. 10.3390/rs11020120
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2019

Model application

12
Gu, Huanghe; Yu, Zhongbo; Yang, Chuanguo; Ju, Qin; 2018. Projected Changes in Hydrological Extremes in the Yangtze River Basin with an Ensemble of Regional Climate Simulations. Water, 10, 1279. 10.3390/w10091279
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2018

Model application

21
Feng Chang, Christina; Garcia, Valerie; Tang, Chunling; Vlahos, Penny; Wanik, David; Yan, Jun; Bash, Jesse O.; Astitha, Marina; 2021. Linking multi-media modeling with machine learning to assess and predict lake chlorophyll a concentrations. Journal of Great Lakes Research, 47, 1656–1670. 10.1016/j.jglr.2021.09.011
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2021

Model application

0
Wu, Xiaotao; Lu, Guihua; Wu, Zhiyong; He, Hai; Scanlon, Tracy; Dorigo, Wouter; 2020. Triple Collocation-Based Assessment of Satellite Soil Moisture Products with In Situ Measurements in China: Understanding the Error Sources. Remote Sensing, 12, 2275. 10.3390/rs12142275
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2020

Model application

11
Raghav, Pushpendra; Kumar, Mukesh; 2021. Retrieving gap-free daily root zone soil moisture using surface flux equilibrium theory. Environmental Research Letters, 16, 104007. 10.1088/1748-9326/ac2441
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2021

Model application

1
Gowri, R.; Dey, Pankaj; Mujumdar, P.P.; 2021. A hydro-climatological outlook on the long-term availability of water resources in Cauvery river basin. Water Security, 14, 100102. 10.1016/j.wasec.2021.100102
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2021

Model application

0
Li, Sisi; Liu, Mingliang; Adam, Jennifer C.; Pi, Huawei; Su, Fengge; Li, Dongyue; Liu, Zhaofei; Yao, Zhijun; 2021. Contribution of Snow-Melt Water to the Streamflow over the Three-River Headwater Region, China. Remote Sensing, 13, 1585. 10.3390/rs13081585
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2021

Model application

4
Sepúlveda, Ulises; Mendoza, Pablo A.; Mizukami, Naoki; Newman, Andrew J.; 2021. Revisiting parameter sensitivities in the Variable Infiltration Capacity model. .
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2021

Model application

0
Yang, Xinchun; Tian, Siyuan; Feng, Wei; Ran, Jiangjun; You, Wei; Jiang, Zhongshan; Gong, Xiaoying; 2020. Spatio-Temporal Evaluation of Water Storage Trends from Hydrological Models over Australia Using GRACE Mascon Solutions. Remote Sensing, 12, 3578. 10.3390/rs12213578
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2020

Model application

7
Shen, Youjiang; Liu, Dedi; Yin, Jiabo; Xiong, Lihua; Liu, Pan; 2020. Integrating hybrid runoff generation mechanism into Variable Infiltration Capacity model to facilitate hydrological simulation. .
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2020

Model application

0
Zhu, Bowen; Xie, Xianhong; Lu, Chuiyu; Lei, Tianjie; Wang, Yibing; Jia, Kun; Yao, Yunjun; 2021. Extensive Evaluation of a Continental-Scale High-Resolution Hydrological Model Using Remote Sensing and Ground-Based Observations. Remote Sensing, 13, 1247. 10.3390/rs13071247
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2021

Model application

4
Zhang, Xuejun; Qu, Yanping; Ma, Miaomiao; Liu, Hui; Su, Zhicheng; Lv, Juan; Peng, Jian; Leng, Guoyong; He, Xiaogang; Di, Chongli; 2020. Satellite-Based Operational Real-Time Drought Monitoring in the Transboundary Lancang–Mekong River Basin. Remote Sensing, 12, 376. 10.3390/rs12030376
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2020

Model application

2
Zhang, Xuejun; Tang, Qiuhong; Leng, Guoyong; Liu, Xingcai; Li, Zhe; Huang, Zhongwei; 2017. On the Dominant Factor Controlling Seasonal Hydrological Forecast Skill in China. Water, 9, 902. 10.3390/w9110902
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2017

Model application

4
Li, Zhiqing; Kong, Youxing; Fu, Le; Zhou, Yingxin; Qian, Zhengfu; Hu, Ruilin; 2021. Model Test Study on Deformation Characteristics of a Fissured Expansive Soil Slope Subjected to Loading and Irrigation. Applied Sciences, 11, 10891. 10.3390/app112210891
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2021

Model application

0
Amantai, Nigenare; Ding, Jianli; 2021. Analysis on the Spatio-Temporal Changes of LST and Its Influencing Factors Based on VIC Model in the Arid Region from 1960 to 2017: An Example of the Ebinur Lake Watershed, Xinjiang, China. Remote Sensing, 13, 4867. 10.3390/rs13234867
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2021

Model application

1
Tan, Linshan; Zheng, Kaiyuan; Zhao, Qiangqiang; Wu, Yanjuan; 2021. Evapotranspiration Estimation Using Remote Sensing Technology Based on a SEBAL Model in the Upper Reaches of the Huaihe River Basin. Atmosphere, 12, 1599. 10.3390/atmos12121599
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2021

Model application

1
Zhao, F.F.; Zhang, L.; Chiew, F.H.S.; Vaze, J.; 2011. The effect of spatial rainfall variability on streamflow prediction for a south-eastern Australian catchment. 19th International Congress on Modelling and Simulation. Volume .
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2011

Model application

7
Xia, Youlong; Mocko, David M.; Wang, Shugong; Pan, Ming; Kumar, Sujay V.; Peters-Lidard, Christa D.; Wei, Helin; Wang, Dagang; Ek, Michael B.; 2018. Comprehensive Evaluation of the Variable Infiltration Capacity (VIC) Model in the North American Land Data Assimilation System. Journal of Hydrometeorology, 19, 1853–1879. 10.1175/JHM-D-18-0139.1
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2018

Model application

12
Gou, Jiaojiao; Miao, Chiyuan; Duan, Qingyun; Tang, Qiuhong; Di, Zhenhua; Liao, Weihong; Wu, Jingwen; Zhou, Rui; 2020. Sensitivity Analysis‐Based Automatic Parameter Calibration of the VIC Model for Streamflow Simulations Over China. Water Resources Research, 56, . 10.1029/2019WR025968
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2020

Model application

61
Horan, Robyn; Gowri, R; Wable, Pawan; Baron, Helen; Keller, Virginie; Garg, Kaushal; Mujumdar, Pradeep; Houghton-Carr, Helen; Rees, Gwyn; 2020. A Comparative Assessment of the GWAVA, SWAT and VIC Models in the Hydrological Modelling of the Upper Cauvery Catchment, India. .
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2020

Model application

0
CNRS – IRD – CONICET – UBA. Instituto Franco-Argentino para el Estudio del Clima y sus Impactos (UMI 3351 IFAECI). Buenos Aires, Argentina.; Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, Departamento de Ciencias de la Atmósfera y los Océanos. Buenos Aires, Argentina.; 2021. PROBABLE INTENSIFICACIÓN DE LAS CONDICIONES DE DÉFICIT HÍDRICO SOBRE LA REGIÓN DEL COMAHUE ANTE DIVERSOS ESCENARIOS DE CAMBIO CLIMÁTICO. Meteorologica, 46, e004–e004. 10.24215/1850468Xe004
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2021

Model application

0
Dang, Thanh Duc; Chowdhury, AFM Kamal; Galelli, Stefano; 2019. On the representation of water reservoir storage and operations in large-scale hydrological models: implications on model parameterization and climate change impact assessments. .
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2019

Model application

53
González Molina, María José; Vargas Mesa, Haydee Ximena; Vásquez Placencia, Nicolás; 2020. Hydrological response to land use scenarios under climate change. Adaptation measures for an agricultural basin: Rapel river basin in central Chile.. .
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2020

Model application

0
Jin, Junliang; Wang, Guoqing; Zhang, Jianyun; Yang, Qinli; Liu, Cuishan; Liu, Yanli; Bao, Zhenxin; He, Ruimin; 2020. Impacts of climate change on hydrology in the Yellow River source region, China. Journal of Water and Climate Change, 11, 916–930. 10.2166/wcc.2018.085
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2020

Model application

18
Xia, Youlong; Cosgrove, Brian A.; Mitchell, Kenneth E.; Peters-Lidard, Christa D.; Ek, Michael B.; Brewer, Michael; Mocko, David; Kumar, Sujay V.; Wei, Helin; Meng, Jesse; Luo, Lifeng; 2016. Basin-scale assessment of the land surface water budget in the National Centers for Environmental Prediction operational and research NLDAS-2 systems: Water Budget in NLDAS-2. Journal of Geophysical Research: Atmospheres, 121, 2750–2779. 10.1002/2015JD023733
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2016

Model application

35
García‐Serrana, María; Gulliver, John S.; Nieber, John L.; 2018. Description of soil micro‐topography and fractional wetted area under runoff using fractal dimensions. Earth Surface Processes and Landforms, 43, 2685–2697. 10.1002/esp.4424
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2018

Model application

6
Zhao Dengzhong; Zhang Wanchang; 2005. Rainfall-runoff simulation using the VIC-3L model over the Heihe River mountainous basin, China. . Volume 6.
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2005

Model application

5
Shukla, S.; McNally, A.; Husak, G.; Funk, C.; 2014. A seasonal agricultural drought forecast system for food-insecure regions of East Africa. Hydrology and Earth System Sciences, 18, 3907–3921. 10.5194/hess-18-3907-2014
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2014

Model application

125
Hernández, Felipe; Liang, Xu; 2018. Hybridizing Bayesian and variational data assimilation for high-resolution hydrologic forecasting. Hydrology and Earth System Sciences, 22, 5759–5779. 10.5194/hess-22-5759-2018
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2018

Model application

9
Zhou, Jianhong; Wu, Zhiyong; He, Hai; Wang, Fang; Xu, Zhengguang; Wu, Xiaotao; 2019. Regional assimilation of in situ observed soil moisture into the VIC model considering spatial variability. Hydrological Sciences Journal, 64, 1982–1996. 10.1080/02626667.2019.1662024
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2019

Model application

8
Shah, Deep; Mishra, Vimal; 2020. Integrated Drought Index (IDI) for Drought Monitoring and Assessment in India. Water Resources Research, 56, None. 10.1029/2019WR026284
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2020

Model application

41
Asoka, Akarsh; Mishra, Vimal; 2020. Anthropogenic and Climate Contributions on the Changes in Terrestrial Water Storage in India. Journal of Geophysical Research: Atmospheres, 125, None. 10.1029/2020JD032470
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2020

Model application

18
Rakovec, Oldrich; Mizukami, Naoki; Kumar, Rohini; Newman, Andrew J.; Thober, Stephan; Wood, Andrew W.; Clark, Martyn P.; Samaniego, Luis; 2019. Diagnostic Evaluation of Large‐Domain Hydrologic Models Calibrated Across the Contiguous United States. Journal of Geophysical Research: Atmospheres, 124, 13991–14007. 10.1029/2019JD030767
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2019

Model application

24
Bennett, Andrew; Nijssen, Bart; Ou, Gengxin; Clark, Martyn; Nearing, Grey; 2019. Quantifying Process Connectivity With Transfer Entropy in Hydrologic Models. Water Resources Research, 55, 4613–4629. 10.1029/2018WR024555
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2019

Model application

22
Liu, L.; Xu, Z.X.; Reynard, N.S.; Hu, C.W.; Jones, R.G.; 2013. Hydrological analysis for water level projections in Taihu Lake, China: Hydrological analysis of water level projections in Taihu Lake, China. Journal of Flood Risk Management, 6, 14–22. 10.1111/jfr3.12015
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2013

Model application

25
Snauffer, Andrew; Hsieh, William; Cannon, Alex; Schnorbus, Markus; 2017. Improving gridded snow water equivalent products in British Columbia, Canada: multi-source data fusion by neural network models. None.
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2017

Model application

15
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Nr. of publications: 647
Total citations: 39205
h-index: 91
m-quotient: 2.33

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