A comparison of hydrologic models for ecological flows and water availability
Peter V Caldwell, Jonathan G. Kennen, Ge Sun, Julie E. Kiang, John B Butcher, Michelle C Eddy, Lauren E. Hay, Jacob H. LaFontaine, Ernie F. Hain, Stacy C Nelson, Steve G McNulty
2015, Ecohydrology (8) 1525-1546
Robust hydrologic models are needed to help manage water resources for healthy aquatic ecosystems and reliable water supplies for people, but there is a lack of comprehensive model comparison studies that quantify differences in streamflow predictions among model applications developed to answer management questions. We assessed differences in daily streamflow...
Metal Mixture Modeling Evaluation project: 2. Comparison of four modeling approaches
Kevin J. Farley, Joe Meyer, Laurie S. Balistrieri, Karl DeSchamphelaere, Yuichi Iwasaki, Colin Janssen, Masashi Kamo, Steve Lofts, Christopher A. Mebane, Wataru Naito, Adam C. Ryan, Robert C. Santore, Edward Tipping
2015, Environmental Toxicology and Chemistry (34) 741-753
As part of the Metal Mixture Modeling Evaluation (MMME) project, models were developed by the National Institute of Advanced Industrial Science and Technology (Japan), the U.S. Geological Survey (USA), HDR⎪HydroQual, Inc. (USA), and the Centre for Ecology and Hydrology (UK) to address the effects of metal mixtures on biological responses...
PRMS-IV, the precipitation-runoff modeling system, version 4
Steven L. Markstrom, R. Steve Regan, Lauren E. Hay, Roland J. Viger, Richard M. Webb, Robert A. Payn, Jacob H. LaFontaine
2015, Techniques and Methods 6-B7
Computer models that simulate the hydrologic cycle at a watershed scale facilitate assessment of variability in climate, biota, geology, and human activities on water availability and flow. This report describes an updated version of the Precipitation-Runoff Modeling System. The Precipitation-Runoff Modeling System is a deterministic, distributed-parameter, physical-process-based modeling system developed...
Global land cover mapping using Earth observation satellite data: Recent progresses and challenges
Yifang Ban, Peng Gong, Chandra Giri
2015, ISPRS Journal of Photogrammetry and Remote Sensing (103) 1-6
Land cover is an important variable for many studies involving the Earth surface, such as climate, food security, hydrology, soil erosion, atmospheric quality, conservation biology, and plant functioning. Land cover not only changes with human caused land use changes, but also changes with nature. Therefore, the state of land...
Effects of water-resource development on Yellowstone River streamflow, 1928-2002
Cheryl A. Eddy-Miller, Katherine J. Chase
2015, Fact Sheet 2015-3004
Major floods in 1996 and 1997 intensified public concern about the effects of human activities on the Yellowstone River in Montana. In 1999, the Yellowstone River Conservation District Council, whose members are primarily representatives from the conservation districts bordering the main stem of the Yellowstone River, was formed to promote...
Magnetotelluric data collected to characterize aquifers in the San Luis Basin, New Mexico
Chad E. Ailes, Brian D. Rodriguez
2015, Open-File Report 2014-1248
The U.S. Geological Survey is conducting a series of multidisciplinary studies of the San Luis Basin as part of the Geologic Framework of Rio Grande Basins project. Detailed geologic mapping, high-resolution airborne magnetic surveys, gravity surveys, magnetotelluric surveys, and hydrologic and lithologic data are being used to better understand the...
Climate change: evaluating your local and regional water resources
Lorraine E. Flint, Alan L. Flint, James H. Thorne
2015, Fact Sheet 2014-3098
The BCM is a fine-scale hydrologic model that uses detailed maps of soils, geology, topography, and transient monthly or daily maps of potential evapotranspiration, air temperature, and precipitation to generate maps of recharge, runoff, snow pack, actual evapotranspiration, and climatic water deficit. With these comprehensive environmental inputs and experienced scientific...
Estimation of unaltered daily mean streamflow at ungaged streams of New York, excluding Long Island, water years 1961-2010
Christopher L. Gazoorian
2015, Scientific Investigations Report 2014-5220
The lakes, rivers, and streams of New York State provide an essential water resource for the State. The information provided by time series hydrologic data is essential to understanding ways to promote healthy instream ecology and to strengthen the scientific basis for sound water management decision making in New York....
Climate change and prairie pothole wetlands: mitigating water-level and hydroperiod effects through upland management
David A. Renton, David M. Mushet, Edward S. DeKeyser
2015, Scientific Investigations Report 2015-5004
Prairie pothole wetlands offer crucial habitat for North America’s waterfowl populations. The wetlands also support an abundance of other species and provide ecological services valued by society. The hydrology of prairie pothole wetlands is dependent on atmospheric interactions. Therefore, changes to the region’s climate can have profound effects on wetland...
Mercury concentrations and distribution in soil, water, mine waste leachates, and air in and around mercury mines in the Big Bend region, Texas, USA
John E. Gray, Peter M. Theodorakos, David L. Fey, David P. Krabbenhoft
2015, Environmental Geochemistry and Health (37) 35-48
Samples of soil, water, mine waste leachates, soil gas, and air were collected from areas mined for mercury (Hg) and baseline sites in the Big Bend area, Texas, to evaluate potential Hg contamination in the region. Soil samples collected within 300 m of an inactive Hg mine contained elevated Hg concentrations...
Lake Michigan Diversion Accounting land cover change estimation by use of the National Land Cover Dataset and raingage network partitioning analysis
Jennifer B. Sharpe, David T. Soong
2015, Open-File Report 2014-1258
The U.S. Army Corps of Engineers (USACE), Chicago District, is responsible for monitoring and computation of the quantity of Lake Michigan water diverted by the State of Illinois. As part of this effort, the USACE uses the Hydrological Simulation Program–FORTRAN (HSPF) with measured meteorological data inputs to estimate runoff from...
An integrated Riverine Environmental Flow Decision Support System (REFDSS) to evaluate the ecological effects of alternative flow scenarios on river ecosystems
Kelly O. Maloney, Colin B. Talbert, Jeffrey C. Cole, Heather S. Galbraith, Carrie J. Blakeslee, Leanne Hanson, Christopher L. Holmquist-Johnson
2015, Fundamental and Applied Limnology (186) 171-192
In regulated rivers, managers must evaluate competing flow release scenarios that attempt to balance both human and natural needs. Meeting these natural flow needs is complex due to the myriad of interacting physical and hydrological factors that affect ecosystems. Tools that synthesize the voluminous scientific data and models on these...
The forcing of southwestern Asia teleconnections by low-frequency sea surface temperature variability during boreal winter
Andrew Hoell, Christopher C. Funk, Mathew Barlow
2015, Journal of Climate (28) 1511-1526
Southwestern Asia, defined here as the domain bounded by 20°–40°N and 40°–70°E, which includes the nations of Iraq, Iran, Afghanistan, and Pakistan, is a water-stressed and semiarid region that receives roughly 75% of its annual rainfall during November–April. The November–April climate of southwestern Asia is strongly influenced by tropical Indo-Pacific...
Influence of hardness on the bioavailability of silver to a freshwater snail after waterborne exposure to silver nitrate and silver nanoparticles
Tasha L. Stoiber, Marie Noele Croteau, Isabella Romer, Mila Tejamaya, Jamie R. Lead, Samuel N. Luoma
2015, Nanotoxicology (9) 918-927
The release of Ag nanoparticles (AgNPs) into the aquatic environment is likely, but the influence of water chemistry on their impacts and fate remains unclear. Here, we characterize the bioavailability of Ag from AgNO3 and from AgNPs capped with polyvinylpyrrolidone (PVP AgNP) and thiolated polyethylene glycol (PEG AgNP) in the...
Hillslope run-off thresholds with shrink–swell clay soils
Ryan D. Stewart, Majdi R. Abou Najm, David E. Rupp, John W. Lane Jr., Hamil C. Uribe, Jose Luis Arumi, John S. Selker
2015, Hydrological Processes (29) 557-571
Irrigation experiments on 12 instrumented field plots were used to assess the impact of dynamic soil crack networks on infiltration and run-off. During applications of intensity similar to a heavy rainstorm, water was seen being preferentially delivered within the soil profile. However, run-off was not observed until soil water content...
Inter-annual and spatial variability of Hamon potential evapotranspiration model coefficients
Gregory J. McCabe, Lauren E. Hay, Andy Bock, Steven L. Markstrom, R. Dwight Atkinson
2015, Journal of Hydrology (521) 389-394
Monthly calibrated values of the Hamon PET coefficient (C) are determined for 109,951 hydrologic response units (HRUs) across the conterminous United States (U.S.). The calibrated coefficient values are determined by matching calculated mean monthly Hamon PET to mean monthly free-water surface evaporation. For most locations and months the calibrated coefficients...
Development of a new semi-analytical model for cross-borehole flow experiments in fractured media
Delphine Roubinet, James Irving, Frederick D. Day-Lewis
2015, Advances in Water Resources (76) 97-108
Analysis of borehole flow logs is a valuable technique for identifying the presence of fractures in the subsurface and estimating properties such as fracture connectivity, transmissivity and storativity. However, such estimation requires the development of analytical and/or numerical modeling tools that are well adapted to the complexity of the problem....
Anomalous solute transport in saturated porous media: Relating transport model parameters to electrical and nuclear magnetic resonance properties
Ryan D Swanson, Andrew Binley, Kristina Keating, Samantha France, Gordon Osterman, Frederick D. Day-Lewis, Kamini Singha
2015, Water Resources Research (51) 1264-1283
The advection-dispersion equation (ADE) fails to describe commonly observed non-Fickian solute transport in saturated porous media, necessitating the use of other models such as the dual-domain mass-transfer (DDMT) model. DDMT model parameters are commonly calibrated via curve fitting, providing little insight into the relation between effective parameters and physical properties...
Geographically isolated wetlands: Rethinking a misnomer
David M. Mushet, Aram J.K. Calhoun, Laurie C. Alexander, Matthew J. Cohen, Edward S. DeKeyser, Laurie G. Fowler, Charles R. Lane, Megan W. Lang, Mark C. Rains, Susan C. Walls
2015, Wetlands (35) 423-431
We explore the category “geographically isolated wetlands” (GIWs; i.e., wetlands completely surrounded by uplands at the local scale) as used in the wetland sciences. As currently used, the GIW category (1) hampers scientific efforts by obscuring important hydrological and ecological differences among multiple wetland functional types, (2) aggregates wetlands in...
The influence of disturbed habitat on the spatial ecology of Argentine black and white tegu (Tupinambis merianae), a recent invader in the Everglades ecosystem (Florida, USA)
Page E. Klug, Robert N. Reed, Frank J. Mazzotti, Michelle A. McEachern, Joy J. Vinci, Katelin K. Craven, Amy A. Yackel Adams
2015, Biological Invasions (17) 1785-1797
The threat of invasive species is often intensified in disturbed habitat. To optimize control programs, it is necessary to understand how degraded habitat influences the behavior of invasive species. We conducted a radio telemetry study to characterize movement and habitat use of introduced male Argentine black and white tegus (Tupinambis...
Hydrologic record extension of water-level data in the Everglades Depth Estimation Network (EDEN), 1991-99
Paul Conrads, Matthew D. Petkewich, Andrew M. O’Reilly, Pamela A. Telis
2015, Scientific Investigations Report 2014-5226
The real-time Everglades Depth Estimation Network (EDEN) has been established to support a variety of scientific and water management purposes. The expansiveness of the Everglades, limited number of gaging stations, and extreme sensitivity of the ecosystem to small changes in water depth have created a need for accurate water-level and...
Flood-inundation maps for Indian Creek and Tomahawk Creek, Johnson County, Kansas, 2014
Arin J. Peters, Seth E. Studley
2015, Scientific Investigations Report 2014-5202
Digital flood-inundation maps for a 6.4-mile upper reach of Indian Creek from College Boulevard to the confluence with Tomahawk Creek, a 3.9-mile reach of Tomahawk Creek from 127th Street to the confluence with Indian Creek, and a 1.9-mile lower reach of Indian Creek from the confluence with Tomahawk Creek to...
Switching predominance of organic versus inorganic carbon exports from an intermediate-size subarctic watershed
Mark M. Dornblaser, Robert G. Striegl
2015, Geophysical Research Letters (42) 386-394
Hydrologic exports of dissolved inorganic and organic carbon (DIC, DOC) reflect permafrost conditions in arctic and subarctic river basins. DIC yields in particular, increase with decreased permafrost extent. We investigated the influence of permafrost extent on DIC and DOC yield in a tributary of the Yukon River, where the upper...
Instrumenting caves to collect hydrologic and geochemical data: case study from James Cave, Virginia
Madeline E. Schreiber, Benjamin F. Schwartz, William Orndorff, Daniel H. Doctor, Sarah D. Eagle, Jonathan D. Gerst
2015, Book chapter, Advances in watershed science and assessment
Karst aquifers are productive groundwater systems, supplying approximately 25 % of the world’s drinking water. Sustainable use of this critical water supply requires information about rates of recharge to karst aquifers. The overall goal of this project is to collect long-term, high-resolution hydrologic and geochemical datasets at James Cave, Virginia,...
Determining the importance of model calibration for forecasting absolute/relative changes in streamflow from LULC and climate changes
Rewati Niraula, Thomas Meixner, Laura M. Norman
2015, Journal of Hydrology (522) 439-451
Land use/land cover (LULC) and climate changes are important drivers of change in streamflow. Assessing the impact of LULC and climate changes on streamflow is typically done with a calibrated and validated watershed model. However, there is a debate on the degree of calibration required. The objective of this study...