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BibEntryCargo > Volume : 15 or 19 & Note: Auto downloaded ref at: 2020-06-24

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Firstname:
Arnold, J. G.; Potter, K. N.; King, K. W.; Allen, P. M.; (1) · Ashraf Vaghefi, S.; Mousavi, S. J.; Abbaspour, K. C.; Srinivasan, R.; Arnold, J. R.; (1) · Betrie, G. D.; Mohamed, Y. A.; van Griensven, A.; Srinivasan, R.; (1) · Cao, Qian; Painter, Thomas H.; Currier, William Ryan; Lundquist, Jessica D.; Lettenmaier, Dennis P.; (1) · Chaney, N. W.; Herman, J. D.; Reed, P. M.; Wood, E. F.; (1) · Chawla, I.; Mujumdar, P. P.; (1) · Chin, Natalie; Byun, Kyuhyun; Hamlet, Alan F.; Cherkauer, Keith A.; (1) · Condon, L. E.; Gangopadhyay, S.; Pruitt, T.; (1) · Daloğlu, Irem; Nassauer, Joan Iverson; Riolo, Rick; Scavia, Donald; (1) · Di Luzio, Mauro; Arnold, Jeffrey G.; Srinivasan, Raghavan; (1) · Dibike, Yonas; Eum, Hyung-Il; Prowse, Terry; (1) · Eckhardt, Klaus; Fohrer, Nicola; Frede, Hans-Georg; (1) · Elsner, Marketa M.; Gangopadhyay, Subhrendu; Pruitt, Tom; Brekke, Levi D.; Mizukami, Naoki; Clark, Martyn P.; (1) · Gosain, A. K.; Rao, Sandhya; Srinivasan, R.; Reddy, N. Gopal; (1) · Jayakrishnan, R.; Srinivasan, R.; Santhi, C.; Arnold, J. G.; (1) · Kang, Do Hyuk; Shi, Xiaogang; Gao, Huilin; Déry, Stephen J.; (1) · Mango, L. M.; Melesse, A. M.; McClain, M. E.; Gann, D.; Setegn, S. G.; (1) · Safeeq, Mohammad; Mauger, Guillaume S.; Grant, Gordon E.; Arismendi, Ivan; Hamlet, Alan F.; Lee, Se-Yeun; (1) · Scavia, Donald; Kalcic, Margaret; Muenich, Rebecca Logsdon; Read, Jennifer; Aloysius, Noel; Bertani, Isabella; Boles, Chelsie; Confesor, Remegio; DePinto, Joseph; Gildow, Marie; Martin, Jay; Redder, Todd; Robertson, Dale; Sowa, Scott; Wang, Yu-Chen; Yen, Haw; (1) · Shrestha, Rajesh R.; Schnorbus, Markus A.; Werner, Arelia T.; Zwiers, Francis W.; (1) · Tripathi, M. P.; Panda, R. K.; Raghuwanshi, N. S.; (1) · Wu, C. H.; Huang, G. R.; Yu, H. J.; (1) · Zhan, W.; Pan, M.; Wanders, N.; Wood, E. F.; (1) · Özdoğan, M.; (1)
Title:
Advances in the application of the SWAT model for water resources management (1) · An integrated social and ecological modeling framework—impacts of agricultural conservation practices on water quality (1) · Assessing potential winter weather response to climate change and implications for tourism in the U.S. Great Lakes and Midwest (1) · Automatic model calibration (1) · Climate change and non-stationary flood risk for the upper Truckee River basin (1) · Climate change impacts on snow water availability in the Euphrates-Tigris basin (1) · Comparing Large-Scale Hydrological Model Predictions with Observed Streamflow in the Pacific Northwest: Effects of Climate and Groundwater* (1) · Correction of real-time satellite precipitation with satellite soil moisture observations (1) · Development of effective management plan for critical subwatersheds using SWAT model (1) · Effect of GIS data quality on small watershed stream flow and sediment simulations (1) · Estimation of Precipitation over the OLYMPEX Domain during Winter 2015/16 (1) · Estimation of soil cracking and the effect on surface runoff in a Texas Blackland Prairie watershed (1) · Evaluating Hydroclimatic Change Signals from Statistically and Dynamically Downscaled GCMs and Hydrologic Models (1) · Flood and drought hydrologic monitoring: the role of model parameter uncertainty (1) · How Does the Choice of Distributed Meteorological Data Affect Hydrologic Model Calibration and Streamflow Simulations? (1) · Integration of hydrologic and water allocation models in basin-scale water resources management considering crop pattern and climate change: Karkheh River Basin in Iran (1) · Isolating the impacts of land use and climate change on streamflow (1) · Land use and climate change impacts on the hydrology of the upper Mara River Basin, Kenya: results of a modeling study to support better resource management (1) · Modelling the Athabasca watershed snow response to a changing climate (1) · Multiple models guide strategies for agricultural nutrient reductions (1) · On the Changing Contribution of Snow to the Hydrology of the Fraser River Basin, Canada (1) · Prediction of extreme floods based on CMIP5 climate models: a case study in the Beijiang River basin, South China (1) · Return-flow assessment for irrigation command in the Palleru river basin using SWAT model (1) · Sediment management modelling in the Blue Nile Basin using SWAT model (1)
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Booktitle:
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URL:
http://doi.wiley.com/10.1002/fee.1472 (1) · http://doi.wiley.com/10.1002/hyp.5609 (1) · http://doi.wiley.com/10.1002/hyp.5612 (1) · http://doi.wiley.com/10.1002/hyp.5613 (1) · http://doi.wiley.com/10.1002/hyp.5618 (1) · http://doi.wiley.com/10.1002/hyp.5622 (1) · http://doi.wiley.com/10.1002/hyp.5624 (1) · http://link.springer.com/10.1007/s10113-013-0573-9 (1) · http://www.ecologyandsociety.org/vol19/iss3/art12/ (1) · https://journals.ametsoc.org/jhm/article/15/2/844/70106/Evaluating-Hydroclimatic-Change-Signals-from (1) · https://journals.ametsoc.org/jhm/article/15/4/1344/5908/On-the-Changing-Contribution-of-Snow-to-the (1) · https://journals.ametsoc.org/jhm/article/15/4/1384/5922/How-Does-the-Choice-of-Distributed-Meteorological (1) · https://journals.ametsoc.org/jhm/article/15/6/2501/70091/Comparing-LargeScale-Hydrological-Model (1) · https://journals.ametsoc.org/jhm/article/19/1/143/69520/Estimation-of-Precipitation-over-the-OLYMPEX (1) · https://linkinghub.elsevier.com/retrieve/pii/S2214581817301817 (1) · https://linkinghub.elsevier.com/retrieve/pii/S2214581818301277 (1) · https://www.hydrol-earth-syst-sci.net/15/2245/2011/ (1) · https://www.hydrol-earth-syst-sci.net/15/2789/2011/ (1) · https://www.hydrol-earth-syst-sci.net/15/807/2011/ (1) · https://www.hydrol-earth-syst-sci.net/19/1385/2015/ (1) · https://www.hydrol-earth-syst-sci.net/19/159/2015/ (1) · https://www.hydrol-earth-syst-sci.net/19/3239/2015/ (1) · https://www.hydrol-earth-syst-sci.net/19/3633/2015/ (1) · https://www.hydrol-earth-syst-sci.net/19/4275/2015/ (1)
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