Groundwater flow -- Arizona -- Computer simulationSee also what's at your library, or elsewhere.
Broader terms:Narrower terms: |
Filed under: Groundwater flow -- Arizona -- Computer simulation
Filed under: Groundwater flow -- Santa Cruz River Watershed (Ariz. and Mexico) -- Computer simulationFiled under: Groundwater flow -- Arizona -- Avra Valley -- Computer simulation
Items below (if any) are from related and broader terms.
Filed under: Groundwater flow -- Arizona Estimates of consumptive use and ground-water return flow and the effect of rising and sustained high river stage on the method of estimation in Cibola Valley, Arizona and California, 1983 and 1984 (Dept. of the Interior, U.S. Geological Survey ;, 1990), by Sandra J. Owen-Joyce, Geological Survey (U.S.), and United States Bureau of Reclamation (page images at HathiTrust) Regional ground-water flow in upper and middle Paleozoic rocks in southeastern Utah and adjacent parts of Arizona, Colorado, and New Mexico (U.S. Dept. of the Interior, U.S. Geological Survey :, 1991), by Emanuel Weiss and Geological Survey (U.S.) (page images at HathiTrust) Spring flow in a portion of Grand Canyon National Park, Arizona (Cooperative National Park Resources Studies Unit, University of Nevada, Las Vegas, 1985), by David Bruce Goings and Nev.) Cooperative National Park Resources Studies Unit (Las Vegas (page images at HathiTrust) Southwest Alluvial basins, Arizona and adjacent states. (U.S. G.P.O. ;, 1995), by T. W. Anderson and Geological Survey (U.S.) (page images at HathiTrust)
Filed under: Groundwater flow -- Arizona -- Avra ValleyFiled under: Groundwater flow -- Arizona -- Graham CountyFiled under: Groundwater flow -- Arizona -- Lyman Lake RegionFiled under: Groundwater flow -- Arizona -- Mathematical models A method for estimating ground-water return flow to the Colorado River in the Palo Verde-Cibola area, California and Arizona (U.S. Geological Survey, 1984), by Sandra J. Owen-Joyce, Geological Survey (U.S.), and United States Bureau of Reclamation (page images at HathiTrust) A method for estimating ground-water return flow to the Colorado River in the Parker area, Arizona and California (U.S. Geological Survey, 1984), by S. A. Leake, Geological Survey (U.S.), and United States Bureau of Reclamation (page images at HathiTrust)
Filed under: Groundwater flow -- Arizona -- Tucson -- Mathematical models Simulated water-level responses, ground-water fluxes, and storage changes for recharge scenarios along Rillito Creek, Tucson, Arizona (U.S. Geological Survey, 2005), by John P. Hoffmann, S. A. Leake, Geological Survey (U.S.), Geological Survey (U.S.). Ground-water Resources Program, and Arizona. Department of Water Resources (page images at HathiTrust) Filed under: Groundwater flow -- Arizona -- Measurement
Filed under: Groundwater flow -- Arizona -- Tucson Region -- MeasurementFiled under: Groundwater flow -- Arizona -- Pinal Creek WatershedFiled under: Groundwater flow -- Arizona -- Pipe Spring National MonumentFiled under: Groundwater flow -- Arizona -- TucsonFiled under: Groundwater flow -- Mathematical models -- Arizona
Filed under: Groundwater flow -- United States -- Computer simulation
Filed under: Groundwater flow -- Florida -- Computer simulation
Filed under: Groundwater flow -- Florida -- Biscayne Bay -- Computer simulationFiled under: Groundwater flow -- Florida -- Miami-Dade County -- Computer simulationFiled under: Groundwater flow -- Georgia -- Computer simulationFiled under: Groundwater flow -- Iowa -- Computer simulation
Filed under: Groundwater flow -- Iowa -- Bremer County -- Computer simulationFiled under: Groundwater flow -- Massachusetts -- Computer simulation
Filed under: Groundwater flow -- Massachusetts -- Woburn Region -- Computer simulationFiled under: Groundwater flow -- Nevada -- Computer simulationFiled under: Groundwater flow -- New Hampshire -- Computer simulationFiled under: Groundwater flow -- New Jersey -- Computer simulation Simulation of ground water flow and movement of the freshwater-saltwater interface in the New Jersey coastal plain (U.S. Dept. of the Interior, U.S. Geological Survey ;, 1999), by Daryll A. Pope, Alison D. Gordon, Geological Survey (U.S.), and New Jersey. Department of Environmental Protection (page images at HathiTrust) Simulation of the ground water flow system in 1992, and simulated effects of projected ground water withdrawals in 2020 in the New Jersey Coastal Plain (U.S. Dept. of the Interior, U.S. Geological Survey ;, 2003), by Alison D. Gordon, Geological Survey (U.S.), and New Jersey. Department of Environmental Protection (page images at HathiTrust)
Filed under: Groundwater flow -- New Jersey -- Picatinny Region -- Computer simulationFiled under: Groundwater flow -- New Mexico -- Computer simulation Hydrogeologic framework and preliminary simulation of ground-water flow in the Mimbres Basin, southwestern New Mexico (U.S. Dept. of the Interior, U.S. Geological Survey ;, 1994), by R. T. Hanson, R. S. Miller, J. S. McLean, Geological Survey (U.S.), and New Mexico. State Engineer Office (page images at HathiTrust) Simulation of ground water flow in the basin fill aquifer of the Tularosa Basin south cental New Mexico (U.S. Geological Survey, 2005), by Glenn F. Huff, Geological Survey (U.S.), Alamogordo (N.M.), and Holloman Air Force Base (N.M.) (page images at HathiTrust)
Filed under: Groundwater flow -- San Juan Basin (N.M. and Colo.) -- Computer simulationFiled under: Groundwater flow -- South Dakota -- Computer simulation Appraisal of the water resources of the Big Sioux aquifer, Lincoln and Union counties, South Dakota (U.S. Dept. of the Interior, U.S. Geological Survy ;, 1998), by Colin A. Niehus, Ryan F. Thompson, Geological Survey (U.S.), Union County (S.D.), Lincoln County (S.D.), and South Dakota Geological Survey (page images at HathiTrust)
Filed under: Groundwater flow -- South Dakota -- Minnehaha County -- Computer simulationFiled under: Groundwater flow -- Virginia -- Computer simulation Design, revisions, and considerations for continued use of a ground-water-flow model of the coastal plain aquifer system in Virginia (U.S. Dept. of the Interior, U.S. Geological Survey ;, 1998), by E. Randolph McFarland and Virginia. Department of Environmental Quality (page images at HathiTrust) USGS ground water flow model ([U.S. Dept. of the Interior, U.S. Geological Survey], 1999), by Martha L Erwin, T. Scott Bruce, E. Randolph McFarland, Geological Survey (U.S.), and Virginia. Department of Environmental Quality (page images at HathiTrust)
Filed under: Groundwater flow -- Computer simulation Model estimated ground water recharge and hydrograph of ground-water discharge to a stream (U.S. Dept. of the Interior, U.S. Geological Survey ;, 1997), by A. T. Rutledge and Geological Survey (U.S.) (page images at HathiTrust) Use of computer programs STLK1 and STWT1 for analysis of stream-aquifer hydraulic interaction (U.S. Dept. of the Interior, U.S. Geological Survey ;, 1999), by Leslie A. Desimone, Paul M. Barlow, and Geological Survey (U.S.). Ground-water Resources Program (page images at HathiTrust) Model for simulating transient, variably saturated, coupled water-heat-solute transport in heterogeneous, anisotropic, 2-dimensional, ground-water systems with variable fluid density (U.S. Dept. of the Interior, U.S. Geological Survey ;, 2001), by Michael J. Friedel and Geological Survey (U.S.) (page images at HathiTrust) Summary of selected computer programs produced by the U.S. Geological Survey for simulation of ground-water flow and quality, 1994 (U.S. G.P.O. ;, 1994), by Charles A. Appel, Thomas E. Reilly, and Geological Survey (U.S.) (page images at HathiTrust) Electronic alanalog computers and ground water basin management, [1961?] (1961), by Lloyd C. Fowler (page images at HathiTrust; US access only) User guide to the subsidence and aquifer-system compaction package (SUB-WT) for water-table aquifers (U.S. Geological Survey, 2007), by S. A. Leake, Devin L. Galloway, Geological Survey (U.S.), Geological Survey (U.S.). Ground-water Resources Program, and Central Arizona Water Conservation District (Ariz.) (page images at HathiTrust) Coupled surface water and ground water flow model (MODBRANCH) for simulation of stream aquifer interaction (U.S. G.P.O. ;, 1996), by Eric D. Swain, Eliezer J. Wexler, and Geological Survey (U.S.) (page images at HathiTrust) Simulating contaminant attenuation, double porosity exchange, and water age in aquifers using MOC3D ([U.S. Dept. of the Interior, U.S. Geological Survey], 1999), by Daniel J Goode and Geological Survey (U.S.) (page images at HathiTrust) Dynamic simulation of unsteady flow of water in unsaturated soils and its application to subirrigation system design (Texas Water Resources Institute, Texas A & M University, 1971), by Edward A. Hiler, Sadiqul I. Bhuiyan, and Texas Water Resources Institute (page images at HathiTrust; US access only) Simulation of ground-water flow in the lower sand unit of the Potomac-Raritan-Magothy aquifer system, Philadelphia, Pennsylvania (Dept. of the Interior, U.S. Geological Survey ;, 1988), by Ronald A. Sloto, Geological Survey (U.S.), and Philadelphia (Pa.). Water Department (page images at HathiTrust) Documentation of a computer program (RES1) to simulate leakage from reservoirs using the Modular Finite-difference Ground-water Flow model (MODFLOW) (U.S. Geological Survey ;, 1996), by Jon P. Fenske, David E. Prudic, S. A. Leake, Geological Survey (U.S.), and Hydrologic Engineering Center (U.S.) (page images at HathiTrust) Documentation for HYDMOD : a program for extracting and processing time-series data from the U.S. Geological Survey's modular three-dimensional finite-difference ground-water flow model (U.S. Dept. of the Interior, U.S. Geological Survey ;, 1999), by R. T. Hanson, S. A. Leake, and Geological Survey (U.S.) (page images at HathiTrust) Simulated effects of salt-mine collapse on ground-water flow and land subsidence in a glacial aquifer system, Livingston County, New York (U.S. Geological Survey ;, 2001), by Richard M. Yager, William M. Kappel, Todd S. Miller, Livingston County (N.Y.). Department of Health, and Geological Survey (U.S.) (page images at HathiTrust) Simulation of ground-water discharge to Biscayne Bay, southeastern Florida (U.S. Dept. of the Interior, U.S. Geological Survey ;, 2001), by Christian D. Langevin, Geological Survey (U.S.), United States Army Corps of Engineers, and Place-Based Studies Program (Geological Survey) (page images at HathiTrust) User's guide to SEAWAT : a computer program for simulation of three-dimensional variable-density ground-water flow (U.S. Geological Survey, 2002), by Weixing Guo, Christian D. Langevin, United States Department of the Interior, and Geological Survey (U.S.) (page images at HathiTrust)
More items available under broader and related terms at left. |