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BibEntryCargo > Journal : Atmospheric Chemistry and Physics or Hydrological Processes & Note: Auto downloaded ref at: 2024-09-07

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Akbas, Abdullah; Freer, Jim; Ozdemir, Hasan; Bates, Paul D.; Turp, M. Tufan; (1) · Bizhanimanzar, Mohammad; Larocque, Marie; Roux, Marjolaine; (1) · Cho, Jaepil; Bosch, David; Vellidis, George; Lowrance, Richard; Strickland, Timothy; (1) · Dourte, Daniel R.; Shukla, Sanjay; Haman, Dorota Z.; Reddy, M. Devender; Devi, M. Uma; Mani, Adusumilli; (1) · Femeena, Pandara V.; Chaubey, Indrajeet; Aubeneau, Antoine; McMillan, Sara K.; Wagner, Paul D.; Fohrer, Nicola; (1) · Ficklin, Darren L.; Luo, Yuzhou; Zhang, Minghua; (1) · Fu, Congsheng; James, April L.; Yao, Huaxia; (1) · Fu, Jianyu; Liu, Bingjun; Lu, Yang; Chen, Yuling; Yang, Fang; He, Yong; Jia, Wenhao; Zhang, Yun; (1) · Gan, Rong; Zuo, Qiting; (1) · Goldstein, Justin C.; Tarhule, Aondover; (1) · Guevara Ochoa, Cristian; Medina Sierra, Agustín; Vives, Luis; Zimmermann, Erik; Bailey, Ryan; (1) · Jin, Xin; Jin, Yanxiang; Mao, Xufeng; Fu, Di; Zhai, Jingya; Zheng, Li; (1) · Lai, Zhengqing; Li, Shuo; Deng, Yang; Lv, Guonian; Ullah, Sana; (1) · Li, Zhanling; Xu, Zongxue; Li, Zhanjie; (1) · Ma, Xing; Xu, Jianchu; van Noordwijk, Meine; (1) · Mahmoodi, Nariman; Wagner, Paul D.; Lei, Chaogui; Narasimhan, Balaji; Fohrer, Nicola; (1) · Markovic, D.; Koch, M.; (1) · Migliaccio, Kati White; Chaubey, Indrajeet; (1) · Mohammadi Khouzani, Najmeh; Ahmadi, Azadeh; Yousefi, Ali; Abbaspour, Karim C.; (1) · Monteiro, José A. F.; Strauch, Michael; Srinivasan, Raghavan; Abbaspour, Karim; Gücker, Björn; (1) · Mu, Danning; Xun, Yihao; Gao, Ya; Ren, Dongyang; Sun, Chen; Ma, Xin; Huang, Guanhua; Xu, Xu; (1) · Nguyen, Binh Quang; Kantoush, Sameh A.; Saber, Mohamed; Binh, Doan Van; Vo, Ngoc Duong; Sumi, Tetsuya; (1) · Nune, Rajesh; George, Biju A.; Western, Andrew W.; Garg, Kaushal K.; Dixit, Sreenath; Ragab, Ragab; (1) · Piniewski, Mikołaj; Szcześniak, Mateusz; Kundzewicz, Zbigniew W.; Mezghani, Abdelkader; Hov, Øystein; (1) · Pisinaras, V.; Petalas, C.; Tsihrintzis, V. A.; Karatzas, G. P.; (1) · Quets, Jan J.; De Lannoy, Gabriëlle J. M.; Pauwels, Valentijn R. N.; (1) · Smit, Edward; van Zijl, George; Riddell, Edward; van Tol, Johan; (1) · Song, Xianfeng; Duan, Zheng; Kono, Yasuyuki; Wang, Mingyu; (1) · Vijhani, Ayushi; Sinha, Vinay Shankar Prasad; Vishwakarma, Chandrashekhar Azad; Singh, Prashant; Sharma, Sudhir Kumar; (1) · Wagner, Paul D.; Bieger, Katrin; Arnold, Jeffrey G.; Fohrer, Nicola; (1) · Wambura, Frank Joseph; Dietrich, Ottfried; Lischeid, Gunnar; (1) · Wan, Rongrong; Liu, Desheng; Munroe, Darla K.; Cai, Shanshan; (1) · Wu, Lei; Liu, Xia; Yang, Zhi; Yu, Yang; Ma, Xiaoyi; (1) · Yang, Qi; Zhao, Zhengyong; Chow, Thien Lien; Rees, Herb W.; Bourque, Charles P.‐A.; Meng, Fan‐Rui; (1) · Zhang, Chengfu; Li, Sheng; Qi, Junyu; Xing, Zisheng; Meng, Fanrui; (1)
Title:
A comprehensive assessment framework for attributing trends in streamflow and groundwater storage to climatic and anthropogenic changes: A case study in the typical semi‐arid catchments of southern India (1) · A modified SWAT model for mechanistic simulation of soil water‐salt transport and the interactions with shallow groundwater (1) · Accuracy of grid precipitation data for Brazil: application in river discharge modelling of the Tocantins catchment (1) · Agricultural management impacts on groundwater: simulations of existing and alternative management options in Peninsular India (1) · An improved process-based representation of stream solute transport in the soil and water assessment tools (1) · Assessing impacts of riparian buffer zones on sediment and nutrient loadings into streams at watershed scale using an integrated REMM-SWAT model: Assessment of riparian buffer zones (1) · Assessing the digital filter method for base flow estimation in glacier melt dominated basins (1) · Assessment of diminishing discharge of springs in Central Himalayan region, India (1) · Changes in low and high flows in the Vistula and the Odra basins: Model projections in the European‐scale context (1) · Climate change sensitivity assessment of streamflow and agricultural pollutant transport in California's Central Valley using Latin hypercube sampling (1) · Comment on Cao W, Bowden BW, Davie T, Fenemor A. 2006. ‘Multi‐variable and multi‐site calibration and validation of SWAT in a large mountainous catchment with high spatial variability’. Hydrological Processes 20(5): 1057‐1073 (1) · Comparison of spectral and time domain calibration methods for precipitation‐discharge processes (1) · Development of a polder module in the SWAT model: SWATpld for simulating polder areas in south‐eastern China (1) · Effects of single‐ and multi‐site calibration strategies on hydrological model performance and parameter sensitivity of large‐scale semi‐arid and semi‐humid watersheds (1) · Enhancing hydrologic modelling through the representation of traditional rainwater harvesting systems: A case study of water tanks in South India (1) · Evaluating the impacts of climate change and switchgrass production on a semiarid basin (1) · Impact of increasing vegetation coverage on gaining and losing streams in an arid endorheic river watershed (1) · Improvement of Soil Water Assessment Tool (SWAT) wetland module for modelling of ephemeral pond hydrology (1) · Improving a distributed hydrological model using evapotranspiration‐related boundary conditions as additional constraints in a data‐scarce river basin (1) · Integrated modeling as a decision‐aiding tool for groundwater management in a Mediterranean agricultural watershed (1) · Integration of remotely sensed C factor into SWAT for modelling sediment yield (1) · Investigations of uncertainty in SWAT hydrologic simulations: a case study of a Canadian Shield catchment (1) · Model calibration using hydropedological insights to improve the simulation of internal hydrological processes using SWAT + (1) · Modelling potential hydrological impact of abandoned underground mines in the Monday Creek Watershed, Ohio (1) · Multi‐site evaluation of hydrology component of SWAT in the coastal plain of southwest Georgia (1) · Performance of WASMOD and SWAT on hydrological simulation in Yingluoxia watershed in northwest of China (1) · Quantifying the impacts of hydraulic infrastructure on tropical streamflows (1) · Representation of hydrological processes in a rural lowland catchment in Northern Germany using SWAT and SWAT + (1) · Sensitivity of streamflow from a Himalayan catchment to plausible changes in land cover and climate (1) · Separating the impact of climate change and human activities on the connection between meteorological and hydrological drought (1) · Spatio‐temporal patterns of the interaction between groundwater and surface water in plains (1) · Stream response to precipitation variability: a spectral view based on analysis and modelling of hydrological cycle components (1) · Tracing water resources flows by complementary use of hydrological and water accounting models (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) · What about reservoirs? Questioning anthropogenic and climatic interferences on water availability (1)
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http://doi.wiley.com/10.1002/hyp.13751 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.10159 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.10293 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.10477 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.10708 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.10724 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.11073 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.11176 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.11453 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.11477 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.13615 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.13960 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.14305 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.14582 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.14589 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.14616 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.14834 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.14980 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.15062 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.15088 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.15098 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.15114 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.15158 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.15258 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.6491 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.7436 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.7546 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.7602 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.7944 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.8066 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.9331 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.9341 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.9386 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.9476 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.9990 (1)
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