Metamodeling for groundwater age forecasting in the Lake Michigan Basin
Michael N. Fienen, B. Thomas Nolan, Leon J. Kauffman, Daniel T. Feinstein
2018, Water Resources Research (54) 4750-4766
Groundwater age is an important indicator of groundwater susceptibility to anthropogenic contamination and a key input to statistical models for forecasting water quality. Numerical models can provide estimates of groundwater age, enabling interpretation of measured age tracers. However, to extend to national‐scale groundwater systems where numerical models are not routinely...
Extraction and development of inset models in support of groundwater age calculations for glacial aquifers
Daniel T. Feinstein, Leon J. Kauffman, Megan J. Haserodt, Brian R. Clark, Paul F. Juckem
2018, Scientific Investigations Report 2018-5038
The U.S. Geological Survey developed a regional model of Lake Michigan Basin (LMB). This report describes the construction of five MODFLOW inset models extracted from the LMB regional model and their application using the particle-tracking code MODPATH to simulate the groundwater age distribution of discharge to wells pumping from glacial...
Rio Grande transboundary integrated hydrologic model and water-availability analysis, New Mexico and Texas, United States, and Northern Chihuahua, Mexico
Randall T. Hanson, Andre B. Ritchie, Scott E. Boyce, Ian Ferguson, Amy E. Galanter, Lorraine E. Flint, Wesley R. Henson
2018, Open-File Report 2018-1091
Errata**September 28, 2018: The purpose of a USGS Open-file report (OFR) is dissemination of information that must be released immediately to fill a public need or information that is not sufficiently refined to warrant publication in one of the other USGS series. As part of that refinement process, an error...
Construction and calibration of a groundwater-flow model to assess groundwater availability in the uppermost principal aquifer systems of the Williston Basin, United States and Canada
Kyle W. Davis, Andrew J. Long
2018, Scientific Investigations Report 2017-5158
The U.S. Geological Survey developed a groundwater-flow model for the uppermost principal aquifer systems in the Williston Basin in parts of Montana, North Dakota, and South Dakota in the United States and parts of Manitoba and Saskatchewan in Canada as part of a detailed assessment of the groundwater availability in...
Simulating selenium and nitrogen fate and transport in coupled stream-aquifer systems of irrigated regions
Christopher D. Shultz, Ryan T. Bailey, Timothy K. Gates, Brent E. Heesemann, Eric D. Morway
2018, Journal of Hydrology (560) 512-529
Elevated levels of selenium (Se) in aqueous environments can harm aquatic life and endanger livestock and human health. Although Se occurs naturally in the rocks and soils of many alluvial aquifers, mining and agricultural activities can increase its rate of mobilization and transport...
Hydrologic assessment and numerical simulation of groundwater flow, San Juan Mine, San Juan County, New Mexico, 2010–13
Anne M. Stewart
2018, Scientific Investigations Report 2017-5155
Coal combustion byproducts (CCBs), which are composed of fly ash, bottom ash, and flue gas desulfurization material, produced at the coal-fired San Juan Generating Station (SJGS), located in San Juan County, New Mexico, have been buried in former surface-mine pits at the San Juan Mine, also referred to as the...
Volume-weighted particle-tracking method for solute-transport modeling; Implementation in MODFLOW–GWT
Richard B. Winston, Leonard F. Konikow, George Z. Hornberger
2018, Techniques and Methods 6-A58
In the traditional method of characteristics for groundwater solute-transport models, advective transport is represented by moving particles that track concentration. This approach can lead to global mass-balance problems because in models of aquifers having complex boundary conditions and heterogeneous properties, particles can originate in cells having different pore volumes and...
Evaluation of the Source and Transport of High Nitrate Concentrations in Ground Water, Warren Subbasin, California
Tracy Nishikawa, Jill N. Densmore, Peter Martin, Jonathan C. Matti
2018, Water-Resources Investigations Report 2003-4009
Ground water historically has been the sole source of water supply for the Town of Yucca Valley in the Warren subbasin of the Morongo ground-water basin, California. An imbalance between ground-water recharge and pumpage caused ground-water levels in the subbasin to decline by as much as 300 feet from the...
Preliminary-assessment and upgrade of a groundwater flow model of the Seacoast Bedrock Aquifer, New Hampshire
Thomas J. Mack
2017, Conference Paper, Proceedings of the MODFLOW and more 2017 conference
In 2003 and 2004, the U.S. Geological Survey investigated the availability of groundwater resources in a 160-square mile area of coastal New Hampshire (Figure 1) using a regional groundwater flow model (Mack, 2009). At that time, population growth and increasing water demand prompted concern for the sustainability of the region’s...
Groundwater-flow budget for the lower Apalachicola-Chattahoochee-Flint River Basin in southwestern Georgia and parts of Florida and Alabama, 2008–12
L. Elliott Jones, Jaime A. Painter, Jacob H. LaFontaine, Nicasio Sepulveda, Dorothy F. Sifuentes
2017, Scientific Investigations Report 2017-5141
As part of the National Water Census program in the Apalachicola-Chattahoochee-Flint (ACF) River Basin, the U.S. Geological Survey evaluated the groundwater budget of the lower ACF, with particular emphasis on recharge, characterizing the spatial and temporal relation between surface water and groundwater, and groundwater pumping. To evaluate the hydrologic budget...
Simulation of groundwater flow and pumping scenarios for 1900–2050 near Mount Pleasant, South Carolina
Jason M. Fine, Matthew D. Petkewich, Bruce G. Campbell
2017, Scientific Investigations Report 2017-5128
Groundwater withdrawals from the Upper Cretaceous-age Middendorf aquifer in South Carolina have created a large, regional cone of depression in the potentiometric surface of the Middendorf aquifer in Charleston and Berkeley Counties, South Carolina. Groundwater-level declines of as much as 249 feet have been observed in wells over the past...
Simulated effects of Lower Floridan aquifer pumping on the Upper Floridan aquifer at Barbour Pointe, Chatham County, Georgia
Gregory S. Cherry, John S. Clarke
2017, Scientific Investigations Report 2017-5085
Steady-state simulations using a revised regional groundwater-flow model based on MODFLOW were run to assess the potential long-term effects on the Upper Floridan aquifer (UFA) of pumping the Lower Floridan aquifer (LFA) at well 36Q398, located at Barbour Pointe in coastal Georgia near Savannah. Simulated pumping of well 36Q398 at...
Estimation of the groundwater resources of the bedrock aquifers at the Kettle Moraine Springs State Fish Hatchery, Sheboygan County, Wisconsin
Charles Dunning, Daniel T. Feinstein, Cheryl A. Buchwald, Randall J. Hunt, Megan J. Haserodt
2017, Scientific Investigations Report 2017-5074
Groundwater resources information was needed to understand regional aquifer systems and water available to wells and springs for rearing important Lake Michigan fish species at the Kettle Moraine Springs State Fish Hatchery in Sheboygan County, Wisconsin. As a basis for estimating the groundwater resources available, an existing groundwater-flow model was...
Documentation for the MODFLOW 6 Groundwater Flow Model
Christian D. Langevin, Joseph D. Hughes, Edward R. Banta, Richard G. Niswonger, Sorab Panday, Alden M. Provost
2017, Techniques and Methods 6-A55
This report documents the Groundwater Flow (GWF) Model for a new version of MODFLOW called MODFLOW 6. The GWF Model for MODFLOW 6 is based on a generalized control-volume finite-difference approach in which a cell can be hydraulically connected to any number of surrounding cells. Users can define the model...
Documentation for the “XT3D” option in the Node Property Flow (NPF) Package of MODFLOW 6
Alden M. Provost, Christian D. Langevin, Joseph D. Hughes
2017, Techniques and Methods 6-A56
This report describes the “XT3D” option in the Node Property Flow (NPF) Package of MODFLOW 6. The XT3D option extends the capabilities of MODFLOW by enabling simulation of fully three-dimensional anisotropy on regular or irregular grids in a way that properly takes into account the full, three-dimensional conductivity tensor. It...
Documentation for the MODFLOW 6 framework
Joseph D. Hughes, Christian D. Langevin, Edward R. Banta
2017, Techniques and Methods 6-A57
MODFLOW is a popular open-source groundwater flow model distributed by the U.S. Geological Survey. Growing interest in surface and groundwater interactions, local refinement with nested and unstructured grids, karst groundwater flow, solute transport, and saltwater intrusion, has led to the development of numerous MODFLOW versions. Often times, there are incompatibilities...
Groundwater flow model for the Little Plover River basin in Wisconsin’s Central Sands
Ken Bradbury, Michael N. Fienen, Maribeth Kniffin, Jacob Krause, Stephen M. Westenbroek, Andrew T. Leaf, Paul M. Barlow
2017, Bulletin 111
The Little Plover River is a groundwater-fed stream in the sand plains region of central Wisconsin. In this region, sandy sediment deposited during or soon after the last glaciation forms an important unconfined sand and gravel aquifer. This aquifer supplies water for numerous high-capacity irrigation, municipal, and industrial wells that...
Predicted pH at the domestic and public supply drinking water depths, Central Valley, California
Celia Z. Rosecrans, Bernard T. Nolan, Jo Ann M. Gronberg
2017, Scientific Investigations Map 3377
This scientific investigations map is a product of the U.S. Geological Survey (USGS) National Water-Quality Assessment (NAWQA) project modeling and mapping team. The prediction grids depicted in this map are of continuous pH and are intended to provide an understanding of groundwater-quality conditions at the domestic and public supply drinking...
An update of the Death Valley regional groundwater flow system transient model, Nevada and California
Wayne R. Belcher, Donald S. Sweetkind, Claudia C. Faunt, Michael T. Pavelko, Mary C. Hill
2017, Scientific Investigations Report 2016-5150
Since the original publication of the Death Valley regional groundwater flow system (DVRFS) numerical model in 2004, more information on the regional groundwater flow system in the form of new data and interpretations has been compiled. Cooperators such as the Bureau of Land Management, National Park Service, U.S. Fish and...
Use of modflow drain package for simulating inter-basin transfer in abandoned coal mines
Mark D. Kozar, Kurt J. McCoy
2017, Conference Paper, Proceedings America Society of Mining and Reclamation
Simulation of groundwater flow in abandoned mines is difficult, especially where flux to and from mines is unknown or poorly quantified, and inter-basin transfer of groundwater occurs. A 3-year study was conducted in the Elkhorn area, West Virginia to better understand groundwater-flow processes and inter-basin transfer in above drainage abandoned...
Applying downscaled Global Climate Model data to a groundwater model of the Suwannee River Basin, Florida, USA
Eric D. Swain, J. Hal Davis
2016, American Journal of Climate Change (5) 526-557
The application of Global Climate Model (GCM) output to a hydrologic model allows for comparisons between simulated recent and future conditions and provides insight into the dynamics of hydrology as it may be affected by climate change. A previously developed numerical model of the Suwannee River Basin, Florida, USA, was...
Groundwater-flow model of the northern High Plains aquifer in Colorado, Kansas, Nebraska, South Dakota, and Wyoming
Steven M. Peterson, Amanda T. Flynn, Jonathan P. Traylor
2016, Scientific Investigations Report 2016-5153
The High Plains aquifer is a nationally important water resource underlying about 175,000 square miles in parts of eight states: Colorado, Kansas, Oklahoma, Nebraska, New Mexico, South Dakota, Texas, and Wyoming. Droughts across much of the Northern High Plains from 2001 to 2007 have combined with recent (2004) legislative mandates...
The 2016 groundwater flow model for Dane County, Wisconsin
Michael J. Parsen, Kenneth R. Bradbury, Randall J. Hunt, Daniel T. Feinstein
2016, Bulletin 110
A new groundwater flow model for Dane County, Wisconsin, replaces an earlier model developed in the 1990s by the Wisconsin Geological and Natural History Survey (WGNHS) and the U.S. Geological Survey (USGS). This modeling study was conducted cooperatively by the WGNHS and the USGS with funding from the Capital Area...
Time-lapse gravity data for monitoring and modeling artificial recharge through a thick unsaturated zone
Jeffrey R. Kennedy, Ty P.A. Ferre, Benjamin Creutzfeldt
2016, Water Resources Research (52) 7244-7261
Groundwater-level measurements in monitoring wells or piezometers are the most common, and often the only, hydrologic measurements made at artificial recharge facilities. Measurements of gravity change over time provide an additional source of information about changes in groundwater storage, infiltration, and for model calibration. We demonstrate that for an artificial...
Regional land subsidence caused by the compaction of susceptible aquifer systems accompanying groundwater extraction
Devin L. Galloway, Stanley A. Leake
Vijay P. Singh, editor(s)
2016, Book chapter, Handbook of applied hydrology
Land subsidence includes both gentle downwarping and sudden sinking of segments of the land surface. Major anthropogenic causes of land subsidence are extraction of fluids including water, oil, and gas. Measurement and detec- tion of land subsidence include both ground-based and remotely sensed air- borne and space-based methods. Methods for measurement of subsidence at points...