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BibEntryCargo > Journal : Geoscientific Model Development or Journal of Hydrology or Simulation Modelling Practice and Theory

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Li, Congrong; Wang, Ming; Liu, Kai; Coulthard, Tom J.; (3) · Hancock, G.R.; Verdon-Kidd, D.; Lowry, J.B.C.; (3) · Gan, Tian; Tucker, Gregory E.; Hutton, Eric W. H.; Piper, Mark D.; Overeem, Irina; Kettner, Albert J.; Campforts, Benjamin; Moriarty, Julia M.; Undzis, Brianna; Pierce, Ethan; McCready, Lynn; (2) · Chauchat, Julien; Cheng, Zhen; Nagel, Tim; Bonamy, Cyrille; Hsu, Tian-Jian; (2) · Chen, Ji; Wu, Yiping; (2) · Hanus, Sarah; Schuster, Lilian; Burek, Peter; Maussion, Fabien; Wada, Yoshihide; Viviroli, Daniel; (2) · Wang, Zhenming; Zhang, Shaoqing; Jin, Yishuai; Jia, Yinglai; Yu, Yangyang; Gao, Yang; Yu, Xiaolin; Li, Mingkui; Lin, Xiaopei; Wu, Lixin; (2) · Wickert, A. D.; (2) · Jepsen, S.M.; Harmon, T.C.; Ficklin, D.L.; Molotch, N.P.; Guan, B.; (2) · Moges, Edom; Demissie, Yonas; Li, Hongyi; (2) · Khadim, Fahad Khan; Dokou, Zoi; Lazin, Rehenuma; Moges, Semu; Bagtzoglou, Amvrossios C.; Anagnostou, Emmanouil; (2) · Mandel, J.; Beezley, J. D.; Kochanski, A. K.; (2) · Gavidia-Calderón, Mario Eduardo; Ibarra-Espinosa, Sergio; Kim, Youngseob; Zhang, Yang; Andrade, Maria de Fatima; (2) · Deng, Shaokun; Yang, Shengmu; Chen, Shengli; Chen, Daoyi; Yang, Xuefeng; Cui, Shanshan; (2) · Rossman, Nathan R.; Zlotnik, Vitaly A.; Rowe, Clinton M.; (2) · Dash, Sonam Sandeep; Sahoo, Bhabagrahi; Raghuwanshi, Narendra Singh; (2) · Luo, Qiankun; Wu, Jianfeng; Yang, Yun; Qian, Jiazhong; Wu, Jichun; (2) · Skinner, Christopher J.; Coulthard, Tom J.; Schwanghart, Wolfgang; Van De Wiel, Marco J.; Hancock, Greg; (2) · Duarte, Pedro; Brændshøi, Jostein; Shcherbin, Dmitry; Barras, Pauline; Albretsen, Jon; Gusdal, Yvonne; Szapiro, Nicholas; Martinsen, Andreas; Samuelsen, Annette; Wang, Keguang; Debernard, Jens Boldingh; (2) · Hoch, Jannis M.; Neal, Jeffrey C.; Baart, Fedor; van Beek, Rens; Winsemius, Hessel C.; Bates, Paul D.; Bierkens, Marc F. P.; (2)
 
Title:
Global sensitivity analysis of parameter uncertainty in landscape evolution models (3) · Landscape evolution of the Wenchuan earthquake-stricken area in response to future climate change (3) · Sediment output from a post-mining catchment – Centennial impacts using stochastically generated rainfall (3) · SedFoam-2.0: a 3-D two-phase flow numerical model for sediment transport (2) · CSDMS Data Components: data–model integration tools for Earth surface processes modeling (2) · Uncertainty propagation in coupled hydrological models using winding stairs and null-space Monte Carlo methods (2) · CVPM 1.1: a flexible heat-transfer modeling system for permafrost (2) · A parameterization scheme for the floating wind farm in a coupled atmosphere–wave model (COAWST v3.7) (2) · Simulation of O<sub>3</sub> and NO<sub><i>x</i></sub> in São Paulo street urban canyons with VEIN (v0.2.2) and MUNICH (v1.0) (2) · Monthly-scale extended predictions using the atmospheric model coupled with a slab ocean (2) · Groundwater modeling in data scarce aquifers: The case of Gilgel-Abay, Upper Blue Nile, Ethiopia (2) · GLOFRIM v1.0 – A globally applicable computational framework for integrated hydrological–hydrodynamic modelling (2) · Evapotranspiration sensitivity to air temperature across a snow-influenced watershed: Space-for-time substitution versus integrated watershed modeling (2) · Advancing representation of hydrologic processes in the Soil and Water Assessment Tool (SWAT) through integration of the TOPographic MODEL (TOPMODEL) features (2) · Open-source modular solutions for flexural isostasy: gFlex v1.0 (2) · Implementation and evaluation of open boundary conditions for sea ice in a regional coupled ocean (ROMS) and sea ice (CICE) modeling system (2) · Coupling a large-scale glacier and hydrological model (OGGM v1.5.3 and CWatM V1.08) – towards an improved representation of mountain water resources in global assessments (2) · Coupled atmosphere-wildland fire modeling with WRF 3.3 and SFIRE 2011 (2) · 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? (2)
 
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