CREST-Publications

From CSDMS
References CREST

Publication(s)YearTypeCited
Wang, Jiahu; Hong, Yang; Li, Li; Gourley, Jonathan J.; Khan, Sadiq I.; Yilmaz, Koray K.; Adler, Robert F.; Policelli, Frederick S.; Habib, Shahid; Irwn, Daniel; Limaye, Ashutosh S.; Korme, Tesfaye; Okello, Lawrence; 2011. The coupled routing and excess storage (CREST) distributed hydrological model. Hydrological Sciences Journal, 56, 84–98. 10.1080/02626667.2010.543087
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2011Model overview 176
Khan, Sadiq I.; Hong, Yang; Wang, Jiahu; Yilmaz, Koray K.; Gourley, Jonathan J.; Adler, Robert F.; Brakenridge, G. Robert; Policelli, Fritz; Habib, Shahid; Irwin, Daniel; 2011. Satellite Remote Sensing and Hydrologic Modeling for Flood Inundation Mapping in Lake Victoria Basin: Implications for Hydrologic Prediction in Ungauged Basins. IEEE Transactions on Geoscience and Remote Sensing, 49, 85–95. 10.1109/TGRS.2010.2057513
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2011Model application 216
Blanton, Brian; Dresback, Kendra; Colle, Brian; Kolar, Randy; Vergara, Humberto; Hong, Yang; Leonardo, Nicholas; Davidson, Rachel; Nozick, Linda; Wachtendorf, Tricia; 2020. An Integrated Scenario Ensemble‐Based Framework for Hurricane Evacuation Modeling: Part 2—Hazard Modeling. Risk Analysis, 40, 117–133. 10.1111/risa.13004
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2020

Model application

24
Xue, Xianwu; Hong, Yang; Limaye, Ashutosh S.; Gourley, Jonathan J.; Huffman, George J.; Khan, Sadiq Ibrahim; Dorji, Chhimi; Chen, Sheng; 2013. Statistical and hydrological evaluation of TRMM-based Multi-satellite Precipitation Analysis over the Wangchu Basin of Bhutan: Are the latest satellite precipitation products 3B42V7 ready for use in ungauged basins?. Journal of Hydrology, 499, 91–99. 10.1016/j.jhydrol.2013.06.042
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2013Model application 281
Meng, Jin; Li, Li; Hao, Zhenchun; Wang, Jiahu; Shao, Quanxi; 2014. Suitability of TRMM satellite rainfall in driving a distributed hydrological model in the source region of Yellow River. Journal of Hydrology, 509, 320–332. 10.1016/j.jhydrol.2013.11.049
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2014Model application 126
Gao, Zhen; Long, Di; Tang, Guoqiang; Zeng, Chao; Huang, Jiesheng; Hong, Yang; 2017. Assessing the potential of satellite-based precipitation estimates for flood frequency analysis in ungauged or poorly gauged tributaries of China’s Yangtze River basin. Journal of Hydrology, 550, 478–496. 10.1016/j.jhydrol.2017.05.025
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2017Model application 61
Li, Na; Tang, Guoqiang; Zhao, Ping; Hong, Yang; Gou, Yabin; Yang, Kai; 2017. Statistical assessment and hydrological utility of the latest multi-satellite precipitation analysis IMERG in Ganjiang River basin. Atmospheric Research, 183, 212–223. 10.1016/j.atmosres.2016.07.020
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2017Model application 73
Chen, Xi; Long, Di; Hong, Yang; Zeng, Chao; Yan, Denghua; 2017. Improved modeling of snow and glacier melting by a progressive two-stage calibration strategy with GRACE and multisource data: How snow and glacier meltwater contributes to the runoff of the Upper Brahmaputra River basin?: A TWO-STAGE MODEL CALIBRATION STRATEGY. Water Resources Research, 53, 2431–2466. 10.1002/2016WR019656
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2017Model application 122
Li, Zhansheng; Yang, Yuan; Kan, Guangyuan; Hong, Yang; 2018. Study on the Applicability of the Hargreaves Potential Evapotranspiration Estimation Method in CREST Distributed Hydrological Model (Version 3.0) Applications. Water, 10, 1882. 10.3390/w10121882
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2018Model application 15
Shen, Xinyi; Hong, Yang; Zhang, Ke; Hao, Zengchao; 2017. Refining a Distributed Linear Reservoir Routing Method to Improve Performance of the CREST Model. Journal of Hydrologic Engineering, 22, 04016061. 10.1061/(ASCE)HE.1943-5584.0001442
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2017Model application 40
Ma, Yingzhao; Yang, Yuan; Han, Zhongying; Tang, Guoqiang; Maguire, Lane; Chu, Zhigang; Hong, Yang; 2018. Comprehensive evaluation of Ensemble Multi-Satellite Precipitation Dataset using the Dynamic Bayesian Model Averaging scheme over the Tibetan plateau. Journal of Hydrology, 556, 634–644. 10.1016/j.jhydrol.2017.11.050
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2018Model application 61
Clark, Robert A.; Flamig, Zachary L.; Vergara, Humberto; Hong, Yang; Gourley, Jonathan J.; Mandl, Daniel J.; Frye, Stuart; Handy, Matthew; Patterson, Maria; 2017. Hydrological Modeling and Capacity Building in the Republic of Namibia. Bulletin of the American Meteorological Society, 98, 1697–1715. 10.1175/BAMS-D-15-00130.1
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2017Model application 14
Gan, Yanjun; Liang, Xin-Zhong; Duan, Qingyun; Ye, Aizhong; Di, Zhenhua; Hong, Yang; Li, Jianduo; 2018. A systematic assessment and reduction of parametric uncertainties for a distributed hydrological model. Journal of Hydrology, 564, 697–711. 10.1016/j.jhydrol.2018.07.055
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2018Model application 18
Zhang, Ke; Xue, Xianwu; Hong, Yang; Gourley, Jonathan J.; Lu, Ning; Wan, Zhanming; Hong, Zhen; Wooten, Rick; 2016. iCRESTRIGRS: a coupled modeling system for cascading flood–landslide disaster forecasting. Hydrology and Earth System Sciences, 20, 5035–5048. 10.5194/hess-20-5035-2016
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2016Model application 33
, ; 2013. 고해상도 다중위성 강수자료와 분포형 수문모형의 유출모의 적용. 대한원격탐사학회지, 29, 263–274. 10.7780/KJRS.2013.29.2.10
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2013Model application 7
Martinaitis, Steven M.; Gourley, Jonathan J.; Flamig, Zachary L.; Argyle, Elizabeth M.; Clark, Robert A.; Arthur, Ami; Smith, Brandon R.; Erlingis, Jessica M.; Perfater, Sarah; Albright, Benjamin; 2017. The HMT Multi-Radar Multi-Sensor Hydro Experiment. Bulletin of the American Meteorological Society, 98, 347–359. 10.1175/BAMS-D-15-00283.1
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2017Model application 14
Shen, Xinyi; Anagnostou, Emmanouil N.; 2017. A framework to improve hyper-resolution hydrological simulation in snow-affected regions. Journal of Hydrology, 552, 1–12. 10.1016/j.jhydrol.2017.05.048
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2017Model application 16
Ma, Jun; Sun, Weiwei; Yang, Gang; Zhang, Dianfa; 2018. Hydrological Analysis Using Satellite Remote Sensing Big Data and CREST Model. IEEE Access, 6, 9006–9016. 10.1109/ACCESS.2018.2810252
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2018Model application 23
Lakew, Haileyesus Belay; Moges, Semu Ayalew; Asfaw, Dereje Hailu; 2017. Hydrological Evaluation of Satellite and Reanalysis Precipitation Products in the Upper Blue Nile Basin: A Case Study of Gilgel Abbay. Hydrology, 4, 39. 10.3390/hydrology4030039
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2017Model application 20
Omer Dis, Muhammet; 2015. Evaluating Multi-Scale Flow Predictions for the Connecticut River Basin. Journal of Waste Water Treatment & Analysis, 6, . 10.4172/2157-7587.1000208
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2015Model application 4
, ; 2011. The applicability analysis on runoff simulation using global average monthly evaporation data. . Volume .
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2011Model application 0
Lakew, Haileyesus Belay; Moges, Semu Ayalew; Asfaw, Dereje Hailu; 2020. Hydrological performance evaluation of multiple satellite precipitation products in the upper Blue Nile basin, Ethiopia. Journal of Hydrology: Regional Studies, 27, 100664. 10.1016/j.ejrh.2020.100664
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2020Model application 18
Khadim, Fahad Khan; Dokou, Zoi; Lazin, Rehenuma; Moges, Semu; Bagtzoglou, Amvrossios C.; Anagnostou, Emmanouil; 2020. Groundwater modeling in data scarce aquifers: The case of Gilgel-Abay, Upper Blue Nile, Ethiopia. Journal of Hydrology, 590, 125214. 10.1016/j.jhydrol.2020.125214
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2020Model application 10
Lazin, Rehenuma; Shen, Xinyi; Koukoula, Marika; Anagnostou, Emmanouil; 2020. Evaluation of the Hyper-Resolution Model-Derived Water Cycle Components Over the Upper Blue Nile Basin. Journal of Hydrology, 590, 125231. 10.1016/j.jhydrol.2020.125231
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2020Model application 7
Lakew, Haileyesus Belay; 2020. Investigating the effectiveness of bias correction and merging MSWEP with gauged rainfall for the hydrological simulation of the upper Blue Nile basin. Journal of Hydrology: Regional Studies, 32, 100741. 10.1016/j.ejrh.2020.100741
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2020Model application 4
Li, Zhi; Chen, Mengye; Gao, Shang; Luo, Xiangyu; Gourley, Jonathan J.; Kirstetter, Pierre; Yang, Tiantian; Kolar, Randall; McGovern, Amy; Wen, Yixin; Rao, Bo; Yami, Teshome; Hong, Yang; 2021. CREST-iMAP v1.0: A fully coupled hydrologic-hydraulic modeling framework dedicated to flood inundation mapping and prediction. Environmental Modelling & Software, 141, 105051. 10.1016/j.envsoft.2021.105051
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2021

Model application

7
Kim, Taereem; Yang, Tiantian; Gao, Shang; Zhang, Lujun; Ding, Ziyu; Wen, Xin; Gourley, Jonathan J.; Hong, Yang; 2021. Can artificial intelligence and data-driven machine learning models match or even replace process-driven hydrologic models for streamflow simulation?: A case study of four watersheds with different hydro-climatic regions across the CONUS. Journal of Hydrology, 598, 126423. 10.1016/j.jhydrol.2021.126423
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2021Model application 16
Gao, Shang; Chen, Mengye; Li, Zhi; Cook, Stephen; Allen, Daniel; Neeson, Thomas; Yang, Titantian; Yami, Teshome; Hong, Yang; 2021. Mapping dynamic non-perennial stream networks using high-resolution distributed hydrologic simulation: A case study in the upper blue river basin. Journal of Hydrology, 600, 126522. 10.1016/j.jhydrol.2021.126522
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2021Model application 4
Teshome, L. Yami; Shang, Gao; Mengye, Chen; Zhi, Li; Laura, Labriola; Calvince, Wara; Feleke, Z. Beshah; Yang, Hong; 2021. CREST/EF5 capacity building to enhance resilience to hydrodynamic disasters in emerging regions. African Journal of Environmental Science and Technology, 15, 230–242. 10.5897/AJEST2021.2989
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2021Model application 0
Chen, Guoding; Zhang, Ke; Wang, Sheng; Xia, Yi; Chao, Lijun; 2021. iHydroSlide3D v1.0: an advanced hydrological-geotechnical model for hydrological simulation and three-dimensional landslide prediction. .
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2021Model application 0
Ma, Qiumei; Xiong, Lihua; Xia, Jun; Xiong, Bin; Yang, Han; Xu, Chong-Yu; 2019. A Censored Shifted Mixture Distribution Mapping Method to Correct the Bias of Daily IMERG Satellite Precipitation Estimates. Remote Sensing, 11, 1345. 10.3390/rs11111345
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2019

Model application

11
Ma, Qiumei; Xiong, Lihua; Liu, Dedi; Xu, Chong-Yu; Guo, Shenglian; 2018. Evaluating the Temporal Dynamics of Uncertainty Contribution from Satellite Precipitation Input in Rainfall-Runoff Modeling Using the Variance Decomposition Method. Remote Sensing, 10, 1876. 10.3390/rs10121876
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2018

Model application

13
Ma, Ziqiang; Tan, Xiao; Yang, Yuan; Chen, Xi; Kan, Guangyuan; Ji, Xiang; Lu, Hanyu; Long, Jian; Cui, Yaokui; Hong, Yang; 2018. The First Comparisons of IMERG and the Downscaled Results Based on IMERG in Hydrological Utility over the Ganjiang River Basin. Water, 10, 1392. 10.3390/w10101392
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2018

Model application

21
Kan, Guangyuan; Tang, Guoqiang; Yang, Yuan; Hong, Yang; Li, Jiren; Ding, Liuqian; He, Xiaoyan; Liang, Ke; He, Lian; Li, Zhansheng; Hu, Youbing; Cui, Yaokui; 2017. An Improved Coupled Routing and Excess Storage (CREST) Distributed Hydrological Model and Its Verification in Ganjiang River Basin, China. Water, 9, 904. 10.3390/w9110904
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2017

Model application

13
Melesse, Assefa M.; Abtew, Wossenu; Moges, Semu A.; Lakew, Haileyesus Belay; 2021. Comparison of Spatial Interpolation Techniques of Rainfall for Hydrological Applications in a Complex Mountainous Region of the Upper Blue Nile Basin. In: (eds.)Nile and Grand Ethiopian Renaissance Dam.. 461–474.
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2021

Model application

0
Song, Song; Xu, Youpeng; Wang, Jiali; Du, Jinkang; Zhang, Jianxin; Wang, Qiang; 2016. The Suitability of the Satellite Metrological Inputs Source on the Hydrological Model in a Small Urban Catchment. .
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2016

Model application

0
Kim, Jong Pil; Kim, Won; Jung, Il-Won; Kim, Gwangseob; 2015. Runoff Prediction in Ungauged Watersheds Using Remote Sensor Datasets. Journal of Water Resource and Hydraulic Engineering, 4, 257–264. 10.5963/JWRHE0403007
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2015

Model application

1
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Nr. of publications: 37
Total citations: 1469
h-index: 16
m-quotient: 1.23

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