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Anderman, E.R.; Hill, M.C.; (1) · Banta, E.R.; (1) · Banta, E.R.; Ahlfeld, D.P.; (1) · Chavarria, S.B.; Moeser, C.B.; Douglas-Mankin, K.R.; (1) · Chen, Z.; Yu, X.; Ozdemir, C.E.; Hsu, T.-J.; Balachandra, S.; (1) · Dawdy, D.R.; Lichty, R.W.; Bergmann, J.M.; (1) · Eggleston, J.R.; Zarriello, P.J.; Carlson, C.S.; (1) · Evenson, E.J., Orndorff, R.C., Blome, C.D., Bohlke, J.K., Herschberger, P.K., Langenheim, V.E., McCabe, G.J., Morlock, S.E., Reeves, H.W., Verdin, J.P., Weyers, H.S., and Wood, T.M. (1) · Feaster, T.D.; Westcott, N.E.; Hudson, R.J.M.; Conrads, P.A.; Bradley, P.M.; (1) · Godoi, V. A., Calado, L., Watanabe, B. W., Yaginuma, L., & Pereira, M. B. (1) · Halford, K.J.; Hanson, R.T.; (1) · Han, L.; Liu, S.-F.; Huang, M.-S.; Ma, J.-F.; Wei, J.-B.; Hu, W.; (1) · Harbaugh, A.W.; (1) · Hart, R.M., Ikard, S.J., Hays, P.D., and Clark, B.R.; (1) · Hoffmann, J.; Leake, S.A.; Galloway, D.L.; Wilson, A.M.; (1) · Hornberger, G.Z.; Konikow, L.F.; (1) · Konikow L.F.; Hornberger G.Z.; (1) · Langevin, C.D.; Shoemaker, W.B.; Guo, W.: (1) · Langevin, C.D.; Thorne Jr., D.T.; Dausman, A.M.; Sukop, M.C.; Guo, W.; (1) · Lindner-Lunsford, J.B.; Ellis, S.R.; (1) · Lindskov, K.L.; Thompson, K.R.; (1) · Mehl, S.W.; Hill, M.C., (1) · Mehl, S.W.; Hill, M.C.; (1) · Mellor, G.L.; (1) · Nakama, L. Y.; Risley, J. C. (1) · Niswonger, R.G.; Panday, S.; Ibaraki, M.; (1) · Olson, Joseph B. ; Kenyon, Jaymes S. ; Angevine, Wayne. A.; Brown, J.M.; Pagowski, M.; Suselj, K.; (1) · Pechlivanidis, I.G.; Olsson, J.; Sharma, D.; Bosshard, T.; Sharma, K.C.; (1) · Risley, J.; (1) · Risser, Dennis W.; (1) · Saberi, O.; Galoie, M.; (1) · Sloto, R.A.; (1) · Stolp, B.; Brooks, L.; (1) · Stolp, B.; brooks, L.; (1) · Thiros, S.; (1) · Tucker, G.E.; Hancock, G.R. (1) · Winston, R.B.; Konikow, L.F.; Hornberger, G.Z.; (1) · Wise, D.R.; Johnson, H.M.; (1) · Wolock, D.M.; (1)
Title:
A Description of the MYNN-EDMF Scheme and the Coupling to Other Components in WRF–ARW (1) · A Turbulence-resolving Numerical Model for Fine Sediment Transport in the Bottom Boundary Layer — FineSed3D (Version 1.0) (1) · A data-input program (MFI2005) for the U.S. Geological Survey modular groundwater model (MODFLOW-2005) and parameter estimation program (UCODE_2005) (1) · A rainfall-runoff simulation model for estimation of flood peaks for small drainage basins. (1) · Addition of MOC3D solute-transport model capability to the U.S. Geological Survey MODFLOW-96 graphical-user interface using Argus open numerical environments (1) · Application of the Precipitation-Runoff Modeling System (PRMS) To Simulate Near-Native Streamflow in the Upper Rio Grande Basin (1) · Application of the SPARROW model to assess surface-water nutrient conditions and sources in the United States Pacific Northwest (1) · Assessment of the climate change impacts on the water resources of the Luni region, India (1) · Comparison of TOPMODEL Streamflow Simulations Using NEXRAD-Based and Measured Rainfall Data, McTier Creek Watershed, South Carolina (1) · Comparison of conceptually based and regression rainfall-runoff models, Denver Metropolitan area, Colorado, and potential applications in urban areas (1) · Effects of Climate and Land-Use Change on Thermal Springs Recharge—A System-Based Coupled Surface-Water and Groundwater-Flow Model for Hot Springs National Park, Arkansas (1) · Effects of urbanization on storm-runoff volume and peak discharge of Valley Creek, eastern Chester County, Pennsylvania (1) · Evaluation of the ground-water flow model for northern Utah Valley, Utah, updated to conditions through 2002 (1) · Evento extremo de ondas na Baía da Ilha Grande: um estudo de caso (1) · GWM-VI: groundwater management with parallel processing for multiple MODFLOW versions (1) · Groundwater and surface-water interaction and effects of pumping in a complex glacial-sediment aquifer, phase 2, east-central Massachusetts (1) · Groundwater management process simulations using an updated version of the three-dimensional numerical model of groundwater flow in northern Utah Valley, Utah County, Utah (2) · MODFLOW-2000 ground-water model-user guide to the Subsidence and Aquifer-System Compaction (SUB) Package (1) · MODFLOW-2000, the U. S. Geological Survey modular ground-water model; user guide to the Link-AMG (LMG) package for solving matrix equations using an algebraic multigrid solver (1) · MODFLOW-2000, the U.S. Geological Survey Modular Ground-Water Model--Documentation of the SEAWAT-2000 Version with the Variable-Density Flow Process (VDF) and the Integrated MT3DMS Transport Process (IMT) (1) · MODFLOW-2000, the U.S. Geological Survey modular ground-water model -- Three additions to the Hydrogeologic-Unit Flow (HUF) Package: Alternative storage for the uppermost active cells, Flows in hydrogeologic units, and the Hydraulic-conductivity depth-dependence (KDEP) capability (1) · MODFLOW-LGR—Documentation of Ghost Node Local Grid Refinement (LGR2) for Multiple Areas and the Boundary Flow and Head (BFH2) Package (1) · MODFLOW-NWT, A Newton Formulation for MODFLOW-2005 (1) · Modelling landscape evolution (1) · Numerical Modeling of Flow Around Groynes with Different Shapes Using TELEMAC-3D Software (1) · Peak-flow characteristics of small urban drainages along the Wasatch Front, Utah (1) · SEAWAT Version 4: A Computer Program for Simulation of Multi-Species Solute and Heat Transport (1) · Simulated water budgets and ground-water/surface-water interactions in Bushkill and parts of Monocacy Creek watersheds, Northampton County, Pennsylvania: A preliminary study with identification of data needs (1) · Simulating the variable-source-area concept of streamflow generation with the watershed model TOPMODEL (1) · Strategic directions for U.S. Geological Survey water science, 2012–2022—Observing, understanding, predicting, and delivering water science to the Nation (1) · Two graphical user interfaces for managing and analyzing MODFLOW groundwater-model scenarios (1) · Use of a rainfall-runoff model for simulating effects of forest management on streamflow in the east fork Lobster Creek basin, Oregon (1) · Use of the Multi-Node Well (MNW) package when simulating solute transport with the MODFLOW ground-water transport process (1) · User guide for the drawdown-limited, multi-node well (MNW) package for the U.S. Geological Survey's modular three-dimensional finite-difference ground-water flow model, versions MODFLOW-96 and MODFLOW-2000 (1) · User’s guide for a three-dimensional, primitive equation, numerical ocean model. (1) · Using the precipitation-runoff modeling system to predict seasonal water availability in the upper Klamath River basin, Oregon and California (1) · Volume-weighted particle-tracking method for solute-transport modeling; Implementation in MODFLOW–GWT (1) · 基于HSPF模型的流域水文水质模拟研究进展 (1)
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URL:
None (6) · 10.3133/tm6a48 (1) · http://pubs.er.usgs.gov/publication/wri874196 (1) · http://pubs.er.usgs.gov/publication/wri894095 (1) · http://pubs.er.usgs.gov/publication/wri934040 (1) · http://pubs.er.usgs.gov/publication/wri934124 (1) · http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=hdsfdxxb201502006 (1) · https://apps.dtic.mil/sti/pdfs/ADA449412.pdf (1) · https://cpb-us-w2.wpmucdn.com/sites.udel.edu/dist/0/7241/files/2018/03/CACR-15-06-FineSed3D_ZCheng-xdarrl.pdf (1) · https://d1wqtxts1xzle7.cloudfront.net/51916547/10.11648.j.ajwse.20160206.11_1.pdf?1487891310=&response-content-disposition=inline%3B+filename%3DNumerical_Modeling_of_Flow_Around_Groyne.pdf&Expires=1593724310&Signature=EgX7SKewoVrwjilguZDb6DvLr9vtwNQjMFXVEhaACV6D1ljAagKdFh6iNoJvR6YWKMxgFrTHfWlfCxut8QZjVOkC998Vx8GWaMz~xnLc6mYZZSSQfogL11DeJPH9MkUmRlg1eYMOWUUxZu6JxnAJUS35JNGxhvHZ94kAJaDld9ZOn6gAk6Cv9IaSrgzTOY-g7dKuKPGgYOtAJ~q7eyBv3R4afPftTHvusI39IymEtZ~vgWholWeGOH0qlCqOW0hV2UHOgnmc4MO5BqOIfTuU8QW40a1zIn4XNTpW-sN-8S0eUYV6~Ltk-DiZHccjgymepGdNFWrWLMKmTR5w~8gntA__&Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA (1) · https://journal.gnest.org/publication/gnest_01370 (1) · https://pubs.er.usgs.gov/publication/ofr01177 (1) · https://pubs.er.usgs.gov/publication/ofr02293 (1) · https://pubs.er.usgs.gov/publication/ofr03233 (1) · https://pubs.er.usgs.gov/publication/ofr03347 (1) · https://pubs.er.usgs.gov/publication/ofr03426 (1) · https://pubs.er.usgs.gov/publication/ofr98188 (1) · https://pubs.er.usgs.gov/publication/sir20065064 (1) · https://pubs.er.usgs.gov/publication/sir20155174 (1) · https://pubs.er.usgs.gov/publication/sir20195044 (1) · https://pubs.er.usgs.gov/publication/sir20205026 (1) · https://pubs.er.usgs.gov/publication/sir20215010 (1) · https://pubs.er.usgs.gov/publication/sir20215045 (1) · https://pubs.er.usgs.gov/publication/tm6A22 (1) · https://pubs.er.usgs.gov/publication/tm6A58 (1) · https://pubs.er.usgs.gov/publication/wri874104 (1) · https://pubs.usgs.gov/of/2010/1057/ (1) · https://pubs.usgs.gov/of/2012/1066/ (1) · https://pubs.usgs.gov/sir/2012/5120/ (1) · https://pubs.usgs.gov/sir/2013/5103/ (1) · https://pubs.usgs.gov/tm/6a44/ (1) · https://pubs.usgs.gov/tm/6a50/ (1) · https://pubs.usgs.gov/tm/tm6a37/ (1) · https://www.researchgate.net/profile/Victor-Godoi-2/publication/285937088_Evento_extremo_de_ondas_na_Baia_da_Ilha_Grande_um_estudo_de_caso/links/5664e83308ae4931cd609d4f/Evento-extremo-de-ondas-na-Baia-da-Ilha-Grande-um-estudo-de-caso.pdf (1)
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