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Alves, Wellmo dos Santos; Martins, Alécio Perini; Ferreira, Raina Santos; (1) · Andrianaki, Maria; Shrestha, Juna; Kobierska, Florian; Nikolaidis, Nikolaos P.; Bernasconi, Stefano M.; (1) · Bayat, Mehrad; Alizadeh, Hosein; Mojaradi, Barat; (1) · Bo, Huijuan; Dong, Xiaohua; Li, Zhonghua; Reta, Gebrehiwet; li, Lu; Wei, Chong; (1) · Briones, Romel; Ella, Victor; Bantayan, Nathaniel; (1) · Deus, Ricardo; Deus, Simonny Simões; Neves, Ramiro Joaquim de Jesus; (1) · Fan, Min; Shibata, Hideaki; Chen, Li; (1) · Gabriel, Mark; Knightes, Chris; Dennis, Robin; Cooter, Ellen; (1) · Gabriel, Mark; Knightes, Christopher; Cooter, Ellen; Dennis, Robin; (1) · Jin, Huiyu; Chen, Wanqi; Zhao, Zhenghong; Wang, Jiajia; Ma, Weichun; (1) · Kibet, Kimengich Baobab; Takeuchi, Junichiro; Fujihara, Masayuki; (1) · Li, A-long; Haitao, Chen; Yuanyuan, Liu; Qiu, Lin; Wenchuan, Wang; (1) · Liang, Xinqiang; Wang, Zhibo; Zhang, Yixiang; Zhu, Chunyan; Lin, Limin; Xu, Lixian; (1) · Liu, Yi; Zheng, Yuejun; Li, Wenpeng; Zhou, Tiantian; (1) · Munoth, Priyamitra; Gehlot, Lalit Kumar; Patel, P. L.; Khandelwal, Sumit; Timbadiya, P. V.; Goyal, Rohit; (1) · Oñate-Valdivieso, Fernando; Sendra, Joaquín Bosque; (1) · Paez-Trujilo, Ana; Cañon, Jeffer; Hernandez, Beatriz; Corzo, Gerald; Solomatine, Dimitri; (1) · Peker, Ismail Bilal; Cuceloglu, Gokhan; Gulbaz, Sezar; Serengil, Yusuf; (1) · Pezet, Florent; Dorioz, Jean-Marcel; Quetin, Philippe; Lafforgue, Michel; Trevisan, Dominique; (1) · Phiri, Thomas L. C.; Mulungu, Deogratias M. M.; (1) · Saia, Sheila M.; Suttles, Kelly M.; Cutts, Bethany B.; Emanuel, Ryan E.; Martin, Katherine L.; Wear, David N.; Coulston, John W.; Vose, James M.; (2) · Singh, Vijay P.; Khedun, C. Prakash; (1) · Smit, Edward; van Zijl, George; Riddell, Eddie; van Tol, Johan; (1) · Taia, Soufiane; Erraioui, Lamia; Arjdal, Youssef; Chao, Jamal; El Mansouri, Bouabid; Scozzari, Andrea; (1) · Takle, Eugene S.; Jha, Manoj; Lu, Er; Arritt, Raymond W.; Gutowski, William J.; (1) · Tessema, Negash; Kebede, Asfaw; Yadeta, Dame; (1) · Wang, S.; Li, Q.; Wang, J.; (1) · Xijun, Wu; Ying, Dong; (1) · Xu, H.; Luo, Y.; (1) · Yang, Qi; Zhao, Zhengyong; Chow, Thien Lien; Rees, Herb W.; Bourque, Charles P.‐A.; Meng, Fan‐Rui; (1) · Zamani, Masood; Shrestha, Narayan Kumar; Akhtar, Taimoor; Boston, Trevor; Daggupati, Prasad; (1) · Zanin, Paulo Rodrigo; Bonuma, Nadia Bernardi; Corseuil, Claudia Weber; (1)
Title:
Advancing model calibration and uncertainty analysis of SWAT models using cloud computing infrastructure: LCC-SWAT (1) · Analysis of Water Balance Components and Parameter Uncertainties Based on SWAT Model with CMADS Data and SUFI-2 Algorithm in Huangbaihe River Catchment, China (1) · Applicability of SWAT Model for Streamflow Simulation in a Highly Managed Agricultural Watershed: -Case Study: Yasu River Basin, Japan- (1) · Applying Climate Change Risk Management Tools to Integrate Streamflow Projections and Social Vulnerability (2) · Assessing high impacts of climate change: spatial characteristics and relationships of hydrological ecosystem services in northern Japan (Teshio River watershed) (1) · Assessment of SWAT spatial and temporal transferability for a high-altitude glacierized catchment (1) · Assimilation versus optimization for SWAT calibration: accuracy, uncertainty, and computational burden analysis (1) · Climate change and its impacts on river discharge in two climate regions in China (1) · EFFECTS OF VARIOUS LAND USE LAND COVER (LULC) DATA ON HYDROLOGICAL MODEL PERFORMANCES (1) · Evaluating the Performance of Satellite-Based Precipitation Products Using Gauge Measurement and Hydrological Modeling: A Case Study in a Dry Basin of Northwest China (1) · Examining the value of hydropedological information on hydrological modeling at different scales in the Sabie catchment, South Africa (1) · Hydrologic Impact Evaluation of Land Use and Land Cover Change in Palico Watershed, Batangas, Philippines Using the SWAT Model (1) · Hydrosedimentological modeling with SWAT using multi-site calibration in nested basins with reservoirs (1) · Integrated hydrological modelling of two contrasting watersheds with a terminal reservoir in the Upper Tapi River basin, India (1) · MODELAGEM APLICADA NA ESTIMATIVA DE VAZÃO DE UMA BACIA HIDROGRÁFICA NO SUDOESTE DE GOIÁS, CERRADO BRASILEIRO (1) · Modelling the effects of climate change on streamflow using climate and hydrological models: the case of the Kesem sub-basin of the Awash River basin, Ethiopia (1) · Multivariate regression trees as an “explainable machine learning” approach to explore relationships between hydroclimatic characteristics and agricultural and hydrological drought severity: case of study Cesar River basin (1) · New Framework for Dynamic Water Environmental Capacity Estimation Integrating the Hydro-Environmental Model and Load–Duration Curve Method—A Case Study in Data-Scarce Luanhe River Basin (1) · No-tillage effects on N and P exports across a rice-planted watershed (1) · Potential Impact of Clean Air Act Regulations on Nitrogen Fate and Transport in the Neuse River Basin: a Modeling Investigation Using CMAQ and SWAT (1) · QUANTIFYING THE CONTRIBUTIONS OF CLIMATE CHANGE AND HUMAN ACTIVITIES TO THE DRAMATIC REDUCTION IN RUNOFF IN THE TAIHANG MOUNTAIN REGION, CHINA (1) · Quantifying factors influencing runoff in mining areas using the SWAT model – a case of the Kuye River in Northern Shaanxi, China (1) · Review of Floods in a Changing Climate: Hydrologic Modeling by P. P. Mujumdar and D. Nagesh KumarCambridge University Press, Cambridge, U.K.; 2012; ISBN 978-1-107-01876-1; 177 pp.; $120. (1) · Semidistributed Hydrological Model with Scarce Information: Application to a Large South American Binational Basin (1) · Simulation modelling for integration of hydropower, irrigation water and water supply potentials of Lweya Basin, Malawi (1) · Simulation of Nitrogen Pollution in the Shanxi Reservoir Watershed Based on SWAT Model (1) · Streamflow in the upper Mississippi river basin as simulated by SWAT driven by 20th Century contemporary results of global climate models and NARCCAP regional climate models (1) · The Application of SWAT Model and Remotely Sensed Products to Characterize the Dynamic of Streamflow and Snow in a Mountainous Watershed in the High Atlas (1) · The Impacts of Different Meteorology Data Sets on Nitrogen Fate and Transport in the SWAT Watershed Model (1) · Using GIS and a digital elevation model to assess the effectiveness of variable grade flow diversion terraces in reducing soil erosion in northwestern New Brunswick, Canada (1) · Using SWAT-VSA to Predict Diffuse Phosphorus Pollution in an Agricultural Catchment with Several Aquifers (1) · Uso do código SWAT na previsão de vazão dos rios da bacia hidrográfica Tocantins-Araguaia (1)
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http://aloki.hu/pdf/1901_119131.pdf (1) · http://link.springer.com/10.1007/s10021-019-00387-5 (2) · http://link.springer.com/10.1007/s10666-014-9400-z (1) · http://link.springer.com/10.1007/s10666-014-9410-x (1) · http://link.springer.com/10.1007/s11027-017-9748-x (1) · http://link.springer.com/10.1007/s11356-016-6112-8 (1) · http://neptjournal.com/upload-images/(18)D-1014-Final.pdf (1) · http://neptjournal.com/upload-images/(42)D-1036.pdf (1) · http://www.eemj.icpm.tuiasi.ro/pdfs/vol23/no6/5_509_Peker_23.pdf (1) · http://www.schweizerbart.de/papers/metz/detail/19/75364/Streamflow_in_the_upper_Mississippi_river_basin_as?af=crossref (1) · http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2318-03312018000100250&lng=en&tlng=en (1) · https://acsess.onlinelibrary.wiley.com/doi/10.1002/vzj2.20280 (1) · https://ascelibrary.org/doi/10.1061/%28ASCE%29HE.1943-5584.0000853 (1) · https://ascelibrary.org/doi/10.1061/%28ASCE%29HE.1943-5584.0000856 (1) · https://ascelibrary.org/doi/10.1061/%28ASCE%29HE.1943-5584.0000914 (1) · https://hess.copernicus.org/articles/19/4609/2015/ (1) · https://hess.copernicus.org/articles/23/3219/2019/ (1) · https://iwaponline.com/jh/article/23/1/1/77758/Advancing-model-calibration-and-uncertainty (1) · https://iwaponline.com/ws/article/19/3/753/41362/Quantifying-factors-influencing-runoff-in-mining (1) · https://iwaponline.com/ws/article/23/12/4891/99157/Integrated-hydrological-modelling-of-two (1) · https://iwaponline.com/ws/article/23/3/1189/93640/Assimilation-versus-optimization-for-SWAT (1) · https://journals.ametsoc.org/view/journals/hydr/23/4/JHM-D-21-0152.1.xml (1) · https://nhess.copernicus.org/articles/23/3863/2023/ (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.7436 (1) · https://ovcre.uplb.edu.ph/journals-uplb/index.php/JESAM/article/view/159/141 (1) · https://periodicos.ufpa.br/index.php/ncn/article/view/5742 (1) · https://seer.ufu.br/index.php/caminhosdegeografia/article/view/57899 (1) · https://www.jstage.jst.go.jp/article/jrcsa/23/2/23_23_2_19/_article (1) · https://www.mdpi.com/1424-8220/23/3/1246 (1) · https://www.mdpi.com/1660-4601/19/14/8389 (1) · https://www.tandfonline.com/doi/full/10.1080/15715124.2019.1683854 (1) · https://www.tandfonline.com/doi/full/10.1080/15715124.2020.1755301 (1)
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