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BibEntryCargo > Editors : Allard, RA et al. or University of Padova or Vicksburg, Miss. : Dept. of the Army, Waterways Experiment Station, Corps of Engineers, Coastal Engineering Research Center ; Washington, DC : For sale by the Supt. of Docs., U.S. G.P.O. or Winter, G.;Ecer, A.; Periaux, J.; Satofuka, N.; Fox, P.; or None or C.A. Brebbia or Cialone, M.A.; or Grayson, R.; Blöschl, G.; or Howe, J. A.; Austin, W.E.N.; Forwick, M.; Paetzel, M.; or M.A. Anderson, D.E., Walling, P.D. Bates or Majumdar, S.K.; Miller, E.W.; Forbes, G.S.; Schmalz, R.F.; Panah, A.A.; or Nittrouer, C.A.; Austin, J.A.; Field, M.E.; Kravitz, J.H.; Syvitski, J.P.M.; Wiberg, P.L.; or Solomon, S.; Qin, D.; Manning, M.; Chen, Z.; Marquis, M.; Averyt, K.B.; Tignor, M.; Miller, H.L.; or Torno, H.C.; & Journal : Ecological Modelling or Geoscientific Model Development or Hydrology and Earth System Sciences or Journal of Coastal Research or Journal of Geophysical Research or Journal of Hydrology or Ocean Dynamics or Water Resources Research & Volume : 1 or 4 or 8 or 13 or 17 or 18 or 19 or 209 & Note : Auto downloaded ref at: 2020-06-16 or Auto downloaded ref at: 2020-06-26 or Auto downloaded ref at: 2020-06-27 or Auto downloaded ref at: 2021-01-11 or Auto downloaded ref at: 2021-01-12 or Auto downloaded ref at: 2022-10-06

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Achete, F. M.; van der Wegen, M.; Roelvink, D.; Jaffe, B.; (1) · Baracchini, Theo; Chu, Philip Y.; Šukys, Jonas; Lieberherr, Gian; Wunderle, Stefan; Wüest, Alfred; Bouffard, Damien; (1) · Beck, H. E.; Bruijnzeel, L. A.; van Dijk, A. I. J. M.; McVicar, T. R.; Scatena, F. N.; Schellekens, J.; (1) · Blyth, E. M.; Finch, J.; Robinson, M.; Rosier, P.; (1) · Cameron, D.; Beven, K.; Tawn, J.; Naden, P.; (1) · Dahl, M.; Pers, B. C.; (1) · Ducharne, A.; (1) · Duku, C.; Rathjens, H.; Zwart, S. J.; Hein, L.; (1) · Gan, R.; Luo, Y.; (1) · Gusyev, M. A.; Abrams, D.; Toews, M. W.; Morgenstern, U.; Stewart, M. K.; (1) · Gusyev, M. A.; Toews, M.; Morgenstern, U.; Stewart, M.; White, P.; Daughney, C.; Hadfield, J.; (1) · Hashemi, H.; Uvo, C. B.; Berndtsson, R.; (1) · He, X.; Sonnenborg, T. O.; Jørgensen, F.; Høyer, A.-S.; Møller, R. R.; Jensen, K. H.; (1) · Herrnegger, M.; Nachtnebel, H. P.; Schulz, K.; (1) · Higy, C.; Musy, A.; (1) · Hostache, R.; Hissler, C.; Matgen, P.; Guignard, C.; Bates, P.; (1) · Huang, J.-C.; Lee, T.-Y.; Kao, S.-J.; (1) · Li, Xiaoshuang; Bellerby, Richard Garth James; Ge, Jianzhong; Wallhead, Philip; Liu, Jing; Yang, Anqiang; (1) · Lin, Haipeng; Feng, Xu; Fu, Tzung-May; Tian, Heng; Ma, Yaping; Zhang, Lijuan; Jacob, Daniel J.; Yantosca, Robert M.; Sulprizio, Melissa P.; Lundgren, Elizabeth W.; Zhuang, Jiawei; Zhang, Qiang; Lu, Xiao; Zhang, Lin; Shen, Lu; Guo, Jianping; Eastham, Sebastian D.; Keller, Christoph A.; (1) · Ludwig, R.; Mauser, W.; (1) · López, Alexander G.; Wilkin, John L.; Levin, Julia C.; (1) · Mallard, M. S.; Nolte, C. G.; Spero, T. L.; Bullock, O. R.; Alapaty, K.; Herwehe, J. A.; Gula, J.; Bowden, J. H.; (1) · Mandel, J.; Beezley, J. D.; Kochanski, A. K.; (1) · Md Ali, A.; Solomatine, D. P.; Di Baldassarre, G.; (1) · Me, W.; Abell, J. M.; Hamilton, D. P.; (1) · Pierce, D. W.; Westerling, A. L.; Oyler, J.; (1) · Pulido-Velazquez, M.; Peña-Haro, S.; García-Prats, A.; Mocholi-Almudever, A. F.; Henriquez-Dole, L.; Macian-Sorribes, H.; Lopez-Nicolas, A.; (1) · Rückamp, Martin; Humbert, Angelika; Kleiner, Thomas; Morlighem, Mathieu; Seroussi, Helene; (1) · Shope, C. L.; Maharjan, G. R.; Tenhunen, J.; Seo, B.; Kim, K.; Riley, J.; Arnhold, S.; Koellner, T.; Ok, Y. S.; Peiffer, S.; Kim, B.; Park, J.-H.; Huwe, B.; (1) · Shrestha, D. L.; Kayastha, N.; Solomatine, D. P.; (1) · Tessum, C. W.; Hill, J. D.; Marshall, J. D.; (1) · Yeo, I.-Y.; Lee, S.; Sadeghi, A. M.; Beeson, P. C.; Hively, W. D.; McCarty, G. W.; Lang, M. W.; (1) · Zeng, R.; Cai, X.; (1) · Zhao, Q.; Liu, Z.; Ye, B.; Qin, Y.; Wei, Z.; Fang, S.; (1) · Zhu, D.; Peng, D. Z.; Cluckie, I. D.; (1) · Zhu, J.; Winter, C. L.; Wang, Z.; (1)
Title:
A 2-D process-based model for suspended sediment dynamics: a first step towards ecological modeling (1) · A comparison of particle-tracking and solute transport methods for simulation of tritium concentrations and groundwater transit times in river water (1) · A novel approach to parameter uncertainty analysis of hydrological models using neural networks (1) · A snowmelt runoff forecasting model coupling WRF and DHSVM (1) · Analyzing streamflow changes: irrigation-enhanced interaction between aquifer and streamflow in the Republican River basin (1) · Analyzing the effects of geological and parameter uncertainty on prediction of groundwater head and travel time (1) · Assessing the impact of different sources of topographic data on 1-D hydraulic modelling of floods (1) · Assessing winter cover crop nutrient uptake efficiency using a water quality simulation model (1) · Calibration of a transient transport model to tritium data in streams and simulation of groundwater ages in the western Lake Taupo catchment, New Zealand (1) · Can soil moisture be mapped onto the terrain? (1) · Comparison of four models simulating phosphorus dynamics in Lake Vänern, Sweden (1) · Coupled atmosphere-wildland fire modeling with WRF 3.3 and SFIRE 2011 (1) · Coupled modeling approach to assess climate change impacts on groundwater recharge and adaptation in arid areas (1) · Data assimilation of in situ and satellite remote sensing data to 3D hydrodynamic lake models: a case study using Delft3D-FLOW v4.03 and OpenDA v2.4 (1) · Digital terrain analysis of the Haute-Mentue catchment an scale effect for hydrological modelling with TOPMODEL (1) · Doppio – a ROMS (v3.6)-based circulation model for the Mid-Atlantic Bight and Gulf of Maine: configuration and comparison to integrated coastal observing network observations (1) · Effects of hydrologic conditions on SWAT model performance and parameter sensitivity for a small, mixed land use catchment in New Zealand (1) · Extended enthalpy formulations in the Ice-sheet and Sea-level System Model (ISSM) version 4.17: discontinuous conductivity and anisotropic streamline upwind Petrov–Galerkin (SUPG) method (1) · Flood frequency estimation by continuous simulation (with likelihood based uncertainty estimation) (1) · From runoff to rainfall: inverse rainfall–runoff modelling in a high temporal resolution (1) · Future humidity trends over the western United States in the CMIP5 global climate models and variable infiltration capacity hydrological modeling system (1) · Integrated assessment of the impact of climate and land use changes on groundwater quantity and quality in the Mancha Oriental system (Spain) (1) · Modelling catchment hydrology within a GIS based SVAT-model framework (1) · Modelling suspended-sediment propagation and related heavy metal contamination in floodplains: a parameter sensitivity analysis (1) · Nonlinear effects of locally heterogeneous hydraulic conductivity fields on regional stream–aquifer exchanges (1) · Reducing scale dependence in TOPMODEL using a dimensionless topographic index (1) · Retrieving monthly and interannual total-scale pH (pHT) on the East China Sea shelf using an artificial neural network: ANN-pHT-v1 (1) · Simulating typhoon-induced storm hydrographs in subtropical mountainous watershed: an integrated 3-layer TOPMODEL (1) · Statistical analysis of error propagation from radar rainfall to hydrological models (1) · Technical challenges and solutions in representing lakes when using WRF in downscaling applications (1) · The impact of forest regeneration on streamflow in 12 mesoscale humid tropical catchments (1) · Towards ecosystem accounting: a comprehensive approach to modelling multiple hydrological ecosystem services (1) · Twelve-month, 12 km resolution North American WRF-Chem v3.4 air quality simulation: performance evaluation (1) · Using the SWAT model to improve process descriptions and define hydrologic partitioning in South Korea (1) · Using the nonlinear aquifer storage–discharge relationship to simulate the base flow of glacier- and snowmelt-dominated basins in northwest China (1) · WRF-GC (v1.0): online coupling of WRF (v3.9.1.1) and GEOS-Chem (v12.2.1) for regional atmospheric chemistry modeling – Part 1: Description of the one-way model (1)
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http://www.hydrol-earth-syst-sci.net/4/225/2000/ (1) · http://www.hydrol-earth-syst-sci.net/4/23/2000/ (1) · http://www.hydrol-earth-syst-sci.net/4/239/2000/ (1) · http://www.hydrol-earth-syst-sci.net/8/1153/2004/ (1) · http://www.hydrol-earth-syst-sci.net/8/923/2004/ (1) · https://gmd.copernicus.org/articles/13/1267/2020/ (1) · https://gmd.copernicus.org/articles/13/3241/2020/ (1) · https://gmd.copernicus.org/articles/13/3709/2020/ (1) · https://gmd.copernicus.org/articles/13/4491/2020/ (1) · https://gmd.copernicus.org/articles/13/5103/2020/ (1) · https://gmd.copernicus.org/articles/4/591/2011/ (1) · https://gmd.copernicus.org/articles/8/1085/2015/ (1) · https://gmd.copernicus.org/articles/8/957/2015/ (1) · https://hess.copernicus.org/articles/17/1833/2013/ (1) · https://hess.copernicus.org/articles/17/3245/2013/ (1) · https://hess.copernicus.org/articles/17/3577/2013/ (1) · https://hess.copernicus.org/articles/18/493/2014/ (1) · https://hess.copernicus.org/articles/18/5239/2014/ (1) · https://hess.copernicus.org/articles/18/539/2014/ (1) · https://hess.copernicus.org/articles/19/1677/2015/ (1) · https://hess.copernicus.org/articles/19/4127/2015/ (1) · https://hess.copernicus.org/articles/19/4377/2015/ (1) · https://hess.copernicus.org/articles/19/631/2015/ (1) · https://www.hydrol-earth-syst-sci.net/13/1235/2009/ (1) · https://www.hydrol-earth-syst-sci.net/13/1897/2009/ (1) · https://www.hydrol-earth-syst-sci.net/13/2399/2009/ (1) · https://www.hydrol-earth-syst-sci.net/13/27/2009/ (1) · https://www.hydrol-earth-syst-sci.net/17/1217/2013/ (1) · https://www.hydrol-earth-syst-sci.net/17/1445/2013/ (1) · https://www.hydrol-earth-syst-sci.net/17/2613/2013/ (1) · https://www.hydrol-earth-syst-sci.net/18/3109/2014/ (1) · https://www.hydrol-earth-syst-sci.net/18/3539/2014/ (1) · https://www.hydrol-earth-syst-sci.net/19/2837/2015/ (1) · https://www.hydrol-earth-syst-sci.net/19/4165/2015/ (1) · https://www.hydrol-earth-syst-sci.net/19/4531/2015/ (1) · https://www.hydrol-earth-syst-sci.net/19/4619/2015/ (1)
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