MT3D-USGS version 1: A U.S. Geological Survey release of MT3DMS updated with new and expanded transport capabilities for use with MODFLOW
Vivek Bedekar, Eric D. Morway, Christian D. Langevin, Matthew J. Tonkin
2016, Techniques and Methods 6-A53
MT3D-USGS, a U.S. Geological Survey updated release of the groundwater solute transport code MT3DMS, includes new transport modeling capabilities to accommodate flow terms calculated by MODFLOW packages that were previously unsupported by MT3DMS and to provide greater flexibility in the simulation of solute transport and reactive solute transport. Unsaturated-zone...
User guide for MODPATH Version 7—A particle-tracking model for MODFLOW
David W. Pollock
2016, Open-File Report 2016-1086
MODPATH is a particle-tracking post-processing program designed to work with MODFLOW, the U.S. Geological Survey (USGS) finite-difference groundwater flow model. MODPATH version 7 is the fourth major release since its original publication. Previous versions were documented in USGS Open-File Reports 89–381 and 94–464 and in USGS Techniques and Methods 6–A41.MODPATH...
Simulating groundwater flow in karst aquifers with distributed parameter models—Comparison of porous-equivalent media and hybrid flow approaches
Eve L. Kuniansky
2016, Scientific Investigations Report 2016-5116
Understanding karst aquifers, for purposes of their management and protection, poses unique challenges. Karst aquifers are characterized by groundwater flow through conduits (tertiary porosity), and (or) layers with interconnected pores (secondary porosity) and through intergranular porosity (primary or matrix porosity). Since the late 1960s, advances have been made in the...
Documentation of a groundwater flow model developed to assess groundwater availability in the Northern Atlantic Coastal Plain aquifer system from Long Island, New York, to North Carolina
John P. Masterson, Jason P. Pope, Michael N. Fienen, Jack Monti, Jr., Mark R. Nardi, Jason S. Finkelstein
2016, Scientific Investigations Report 2016-5076
The U.S. Geological Survey developed a groundwater flow model for the Northern Atlantic Coastal Plain aquifer system from Long Island, New York, to northeastern North Carolina as part of a detailed assessment of the groundwater availability of the area and included an evaluation of how these resources have changed over...
Groundwater-flow model for the Wood River Valley aquifer system, south-central Idaho
Jason C. Fisher, James R. Bartolino, Allan H. Wylie, Jennifer Sukow, Michael McVay
2016, Scientific Investigations Report 2016-5080
A three-dimensional numerical model of groundwater flow was developed for the Wood River Valley (WRV) aquifer system, Idaho, to evaluate groundwater and surface-water availability at the regional scale. This mountain valley is located in Blaine County and has a drainage area of about 2,300 square kilometers (888 square miles). The...
Building groundwater modeling capacity in Mongolia
Joshua F. Valder, Janet M. Carter, Mark T. Anderson, Kyle W. Davis, Michelle A. Haynes, Dorjsuren Dechinlhundev
2016, Open-File Report 2016-1096
Ulaanbaatar, the capital city of Mongolia (fig. 1), is dependent on groundwater for its municipal and industrial water supply. The population of Mongolia is about 3 million people, with about one-half the population residing in or near Ulaanbaatar (World Population Review, 2016). Groundwater is drawn from a network of shallow...
Hydrogeology and water quality of the Floridan aquifer system and effect of Lower Floridan aquifer withdrawals on the Upper Floridan aquifer at Barbour Pointe Community, Chatham County, Georgia, 2013
Gerard Gonthier, John S. Clarke
2016, Scientific Investigations Report 2016-5028
Two test wells were completed at the Barbour Pointe community in western Chatham County, near Savannah, Georgia, in 2013 to investigate the potential of using the Lower Floridan aquifer as a source of municipal water supply. One well was completed in the Lower Floridan aquifer at a depth of 1,080...
Numerical simulation of the groundwater-flow system of the Kitsap Peninsula, west-central Washington
Lonna M. Frans, Theresa D. Olsen
2016, Scientific Investigations Report 2016-5052
A groundwater-flow model was developed to improve understanding of water resources on the Kitsap Peninsula. The Kitsap Peninsula is in the Puget Sound lowland of west-central Washington, is bounded by Puget Sound on the east and by Hood Canal on the west, and covers an area of about 575 square...
Scripting MODFLOW model development using Python and FloPy
Mark Bakker, Vincent E. A. Post, Christian D. Langevin, Joseph D. Hughes, Jeremy T. White, Jeffrey Starn, Michael N. Fienen
2016, Groundwater (54) 733-739
Graphical user interfaces (GUIs) are commonly used to construct and postprocess numerical groundwater flow and transport models. Scripting model development with the programming language Python is presented here as an alternative approach. One advantage of Python is that there are many packages available to facilitate the model development process, including...
Simulation of groundwater storage changes in the eastern Pasco Basin, Washington
Charles E. Heywood, Sue C. Kahle, Theresa D. Olsen, James D. Patterson, Erick Burns
2016, Scientific Investigations Report 2016-5026
The Miocene Columbia River Basalt Group and younger sedimentary deposits of lacustrine, fluvial, eolian, and cataclysmic-flood origins compose the aquifer system of the Pasco Basin in eastern Washington. Irrigation return flow and canal leakage from the Columbia Basin Project have caused groundwater levels to rise substantially in some areas,...
Evaluating the sources of water to wells: Three techniques for metamodeling of a groundwater flow model
Michael N. Fienen, Bernard T. Nolan, Daniel T. Feinstein
2016, Environmental Modelling and Software (77) 95-107
For decision support, the insights and predictive power of numerical process models can be hampered by insufficient expertise and computational resources required to evaluate system response to new stresses. An alternative is to emulate the process model with a statistical “metamodel.” Built on a dataset of collocated numerical model input...
Hydrologic data and groundwater-flow simulations in the Brown Ditch Watershed, Indiana Dunes National Lakeshore, near Beverly Shores and Town of Pines, Indiana
David C. Lampe
2016, Scientific Investigations Report 2015-5141
The U.S. Geological Survey (USGS) collected data and simulated groundwater flow to increase understanding of the hydrology and the effects of drainage alterations on the water table in the vicinity of Great Marsh, near Beverly Shores and Town of Pines, Indiana. Prior land-management practices have modified drainage and caused changes...
T-COMP — A suite of programs for extracting transmissivity from MODFLOW models
Keith J. Halford
2016, Techniques and Methods 6-A54
Simulated transmissivities are constrained poorly by assigning permissible ranges of hydraulic conductivities from aquifer-test results to hydrogeologic units in groundwater-flow models. These wide ranges are derived from interpretations of many aquifer tests that are categorized by hydrogeologic unit. Uncertainty is added where contributing thicknesses differ between field estimates and numerical...
PHT3D-UZF: A reactive transport model for variably-saturated porous media
Ming Zhi Wu, Vincent E. A. Post, S. Ursula Salmon, Eric D. Morway, H. Prommer
2016, Ground Water (54) 23-34
A modified version of the MODFLOW/MT3DMS-based reactive transport model PHT3D was developed to extend current reactive transport capabilities to the variably-saturated component of the subsurface system and incorporate diffusive reactive transport of gaseous species. Referred to as PHT3D-UZF, this code incorporates flux terms calculated by MODFLOW's unsaturated-zone flow (UZF1) package....
Extending the MODPATH algorithm to rectangular unstructured grids
David W. Pollock
2016, Ground Water (54) 121-125
The recent release of MODFLOW-USG, which allows model grids to have irregular, unstructured connections, requires a modification of the particle-tracking algorithm used by MODPATH. This paper describes a modification of the semi-analytical particle-tracking algorithm used by MODPATH that allows it to be extended to rectangular-based unstructured grids by dividing grid...
A semi-structured MODFLOW-USG model to evaluate local water sources to wells for decision support
Daniel T. Feinstein, Michael N. Fienen, Howard W. Reeves, Christian D. Langevin
2016, Ground Water (54) 532-544
In order to better represent the configuration of the stream network and simulate local groundwater-surface water interactions, a version of MODFLOW with refined spacing in the topmost layer was applied to a Lake Michigan Basin (LMB) regional groundwater-flow model developed by the U.S. Geological. Regional MODFLOW models commonly use coarse...
Integrated water flow model and modflow-farm process: A comparison of theory, approaches, and features of two integrated hydrologic models
Emin C. Dogrul, Wolfgang Schmid, Randall T. Hanson, Tariq Kadir, Francis Chung
2016, Report
Effective modeling of conjunctive use of surface and subsurface water resources requires simulation of land use-based root zone and surface flow processes as well as groundwater flows, streamflows, and their interactions. Recently, two computer models developed for this purpose, the Integrated Water Flow Model (IWFM) from the California Department of...
Examples of deformation-dependent flow simulations of conjunctive use with MF-OWHM
Randall T. Hanson, Jonathan A. Traum, Scott E. Boyce, Wolfgang Schmid, Joseph D. Hughes
2015, Proceedings of the International Association of Hydrological Sciences (372) 449-453
The dependency of surface- and groundwater flows and aquifer hydraulic properties on deformation induced by changes in aquifer head is not accounted for in the standard version of MODFLOW. A new USGS integrated hydrologic model, MODFLOW-OWHM, incorporates this dependency by linking subsidence and mesh deformation with changes in aquifer transmissivity...
Groundwater and surface-water interaction and effects of pumping in a complex glacial-sediment aquifer, phase 2, east-central Massachusetts
Jack R. Eggleston, Phillip J. Zarriello, Carl S. Carlson
2015, Scientific Investigations Report 2015-5174
The U.S. Geological Survey, in cooperation with the Town of Framingham, Massachusetts, has investigated the potential of proposed groundwater withdrawals at the Birch Road well site to affect nearby surface water bodies and wetlands, including Lake Cochituate, the Sudbury River, and the Great Meadows National Wildlife Refuge in east-central Massachusetts....
Groundwater/surface-water interactions in the Bad River Watershed, Wisconsin
Andrew T. Leaf, Michael N. Fienen, Randall J. Hunt, Cheryl A. Buchwald
2015, Scientific Investigations Report 2015-5162
A groundwater-flow model was developed for the Bad River Watershed and surrounding area by using the U.S. Geological Survey (USGS) finite-difference code MODFLOW-NWT. The model simulates steady-state groundwater-flow and base flow in streams by using the streamflow routing (SFR) package. The objectives of this study were to: (1) develop an...
Particle tracking for selected groundwater wells in the lower Yakima River Basin, Washington
Matthew P. Bachmann
2015, Scientific Investigations Report 2015-5149
The Yakima River Basin in south-central Washington has a long history of irrigated agriculture and a more recent history of large-scale livestock operations, both of which may contribute nutrients to the groundwater system. Nitrate concentrations in water samples from shallow groundwater wells in the lower Yakima River Basin exceeded the...
Documentation of a restart option for the U.S. Geological Survey coupled Groundwater and Surface-Water Flow (GSFLOW) model
R. Steve Regan, Richard G. Niswonger, Steven L. Markstrom, Paul M. Barlow
2015, Techniques and Methods 6-D3
A new option to write and read antecedent conditions (also referred to as initial conditions) has been developed for the U.S. Geological Survey (USGS) Groundwater and Surface-Water Flow (GSFLOW) numerical, hydrologic simulation code. GSFLOW is an integration of the USGS Precipitation-Runoff Modeling System (PRMS) and USGS Modular Groundwater-Flow Model (MODFLOW),...
A comparison of estimates of basin-scale soil-moisture evapotranspiration and estimates of riparian groundwater evapotranspiration with implications for water budgets in the Verde Valley, Central Arizona, USA
Fred D. Tillman, Stephen M. Wiele, Donald R. Pool
2015, Journal of Arid Environments (124) 278-291
Population growth in the Verde Valley in Arizona has led to efforts to better understand water availability in the watershed. Evapotranspiration (ET) is a substantial component of the water budget and a critical factor in estimating groundwater recharge in the area. In this study, four estimates of ET are compared...
Relations between well-field pumping and induced canal leakage in east-central Miami-Dade County, Florida, 2010-2011
Katherine Nemec, Dominick J. Antolino, Michael Turtora, Adam Foster
2015, Scientific Investigations Report 2015-5095
An extensive canal and water management system exists in south Florida to prevent flooding, replenish groundwater, and impede saltwater intrusion. The unconfined Biscayne aquifer, which underlies southeast Florida and provides water for millions of residents, interacts with the canal system. The Biscayne aquifer is composed of a highly transmissive karst...
Water-budgets and recharge-area simulations for the Spring Creek and Nittany Creek Basins and parts of the Spruce Creek Basin, Centre and Huntingdon Counties, Pennsylvania, Water Years 2000–06
John W. Fulton, Dennis W. Risser, R. Steve Regan, John F. Walker, Randall J. Hunt, Richard G. Niswonger, Scott A. Hoffman, Steven L. Markstrom
2015, Scientific Investigations Report 2015-5073
This report describes the results of a study by the U.S. Geological Survey in cooperation with ClearWater Conservancy and the Pennsylvania Department of Environmental Protection to develop a hydrologic model to simulate a water budget and identify areas of greater than average recharge for the Spring Creek Basin in central...