Temporal variability of exchange between groundwater and surface water based on high-frequency direct measurements of seepage at the sediment-water interface
Donald O. Rosenberry, Rich W. Sheibley, Stephen E. Cox, Frederic W. Simonds, David L. Naftz
2013, Water Resources Research (49) 2975-2986
Seepage at the sediment-water interface in several lakes, a large river, and an estuary exhibits substantial temporal variability when measured with temporal resolution of 1 min or less. Already substantial seepage rates changed by 7% and 16% in response to relatively small rain events at two lakes in the northeastern...
Recharge sources and residence times of groundwater as determined by geochemical tracers in the Mayfield Area, southwestern Idaho, 2011–12
Candice B. Hopkins
2013, Scientific Investigations Report 2013-5115
Parties proposing residential development in the area of Mayfield, Idaho are seeking a sustainable groundwater supply. During 2011–12, the U.S. Geological Survey, in cooperation with the Idaho Department of Water Resources, used geochemical tracers in the Mayfield area to evaluate sources of aquifer recharge and differences in groundwater residence time....
Analysis of 1997–2008 groundwater level changes in the upper Deschutes Basin, Central Oregon
Marshall W. Gannett, Kenneth E. Lite Jr.
2013, Scientific Investigations Report 2013-5092
Groundwater-level monitoring in the upper Deschutes Basin of central Oregon from 1997 to 2008 shows water-level declines in some places that are larger than might be expected from climate variations alone, raising questions regarding the influence of groundwater pumping, canal lining (which decreases recharge), and other human influences. Between the...
Evaluation of stream chemistry trends in US Geological Survey reference watersheds, 1970-2010
M. Alisa Mast
2013, Environmental Monitoring and Assessment (185) 9343-9359
The Hydrologic Benchmark Network (HBN) is a long-term monitoring program established by the US Geological Survey in the 1960s to track changes in the streamflow and stream chemistry in undeveloped watersheds across the USA. Trends in stream chemistry were tested at 15 HBN stations over two periods (1970–2010 and 1990–2010)...
The use of process models to inform and improve statistical models of nitrate occurrence, Great Miami River Basin, southwestern Ohio
Donald A. Walter, J. Jeffrey Starn
2013, Scientific Investigations Report 2012-5001
Statistical models of nitrate occurrence in the glacial aquifer system of the northern United States, developed by the U.S. Geological Survey, use observed relations between nitrate concentrations and sets of explanatory variables—representing well-construction, environmental, and source characteristics— to predict the probability that nitrate, as nitrogen, will exceed a threshold concentration....
Relation of watershed setting and stream nutrient yields at selected sites in central and eastern North Carolina, 1997-2008
Stephen L. Harden, Thomas F. Cuffney, Silvia Terziotti, Katharine R. Kolb
2013, Scientific Investigations Report 2013-5007
Data collected between 1997 and 2008 at 48 stream sites were used to characterize relations between watershed settings and stream nutrient yields throughout central and eastern North Carolina. The focus of the investigation was to identify environmental variables in watersheds that influence nutrient export for supporting the development and prioritization...
Flood-inundation maps for the East Fork White River at Columbus, Indiana
Pamela J. Lombard
2013, Scientific Investigations Map 3255
Digital flood-inundation maps for a 5.4-mile reach of the East Fork White River at Columbus, Indiana, from where the Flatrock and Driftwood Rivers combine to make up East Fork White River to just upstream of the confluence of Clifty Creek with the East Fork White River, were created by the...
Analysis of environmental setting, surface-water and groundwater data, and data gaps for the Citizen Potawatomi Nation Tribal Jurisdictional Area, Oklahoma, through 2011
William J. Andrews, Christopher R. Harich, S. Jerrod Smith, Jason M. Lewis, Molly J. Shivers, Christian H. Seger, Carol Becker
2013, Scientific Investigations Report 2013-5010
The Citizen Potawatomi Nation Tribal Jurisdictional Area, consisting of approximately 960 square miles in parts of three counties in central Oklahoma, has an abundance of water resources, being underlain by three principal aquifers (alluvial/terrace, Central Oklahoma, and Vamoosa-Ada), bordered by two major rivers (North Canadian and Canadian), and has several...
Estimating instream constituent loads using replicate synoptic sampling, Peru Creek, Colorado
Robert L. Runkel, Katherine Walton-Day, Briant A. Kimball, Philip L. Verplanck, David A. Nimick
2013, Journal of Hydrology (489) 26-41
The synoptic mass balance approach is often used to evaluate constituent mass loading in streams affected by mine drainage. Spatial profiles of constituent mass load are used to identify sources of contamination and prioritize sites for remedial action. This paper presents a field scale study in which replicate synoptic...
Estimating irrigation water demand using an improved method and optimizing reservoir operation for water supply and hydropower generation: a case study of the Xinfengjiang reservoir in southern China
Yiping Wu, Ji Chen
2013, Agricultural Water Management (116) 110-121
The ever-increasing demand for water due to growth of population and socioeconomic development in the past several decades has posed a worldwide threat to water supply security and to the environmental health of rivers. This study aims to derive reservoir operating rules through establishing a multi-objective optimization model for the...
Evaporative losses from soils covered by physical and different types of biological soil crusts
S. Chamizo, Y. Canton, F. Domingo, J. Belnap
2013, Hydrological Processes (27) 324-332
Evaporation of soil moisture is one of the most important processes affecting water availability in semiarid ecosystems. Biological soil crusts, which are widely distributed ground cover in these ecosystems, play a recognized role on water processes. Where they roughen surfaces, water residence time and thus infiltration can be greatly enhanced,...
Simulating mechanisms for dispersal, production and stranding of small forage fish in temporary wetland habitats
Simeon Yurek, Donald L. DeAngelis, Joel C. Trexler, Fred Jopp, Douglas D. Donalson
2013, Ecological Modelling (250) 391-401
Movement strategies of small forage fish (<8 cm total length) between temporary and permanent wetland habitats affect their overall population growth and biomass concentrations, i.e., availability to predators. These fish are often the key energy link between primary producers and top predators, such as wading birds, which require high concentrations...
Tidal wetlands of the Yaquina and Alsea River estuaries, Oregon: Geographic Information Systems layer development and recommendations for National Wetlands Inventory revisions
Laura S. Brophy, Deborah A. Reusser, Christopher N. Janousek
2013, Open-File Report 2012-1038
Geographic Information Systems (GIS) layers of current, and likely former, tidal wetlands in two Oregon estuaries were generated by enhancing the 2010 National Wetlands Inventory (NWI) data with expert local field knowledge, Light Detection and Ranging-derived elevations, and 2009 aerial orthophotographs. Data were generated for two purposes: First, to enhance...
Analyzing the water budget and hydrological characteristics and responses to land use in a monsoonal climate river basin in South China
Yiping Wu, Ji Chen
2013, Environmental Management (51) 1174-1186
Hydrological models have been increasingly used by hydrologists and water resource managers to understand natural processes and human activities that affect watersheds. In this study, we use the physically based model, Soil and Water Assessment Tool (SWAT), to investigate the hydrological processes in the East River Basin in South China,...
Investigating the effects of point source and nonpoint source pollution on the water quality of the East River (Dongjiang) in South China
Yiping Wu, Ji Chen
2013, Ecological Indicators (32) 294-304
Understanding the physical processes of point source (PS) and nonpoint source (NPS) pollution is critical to evaluate river water quality and identify major pollutant sources in a watershed. In this study, we used the physically-based hydrological/water quality model, Soil and Water Assessment Tool, to investigate the influence of PS and...
Continuous real-time water-quality monitoring and regression analysis to compute constituent concentrations and loads in the North Fork Ninnescah River upstream from Cheney Reservoir, south-central Kansas, 1999–2012
Mandy L. Stone, Jennifer L. Graham, Jackline W. Gatotho
2013, Scientific Investigations Report 2013-5071
Cheney Reservoir, located in south-central Kansas, is the primary water supply for the city of Wichita. The U.S. Geological Survey has operated a continuous real-time water-quality monitoring station since 1998 on the North Fork Ninnescah River, the main source of inflow to Cheney Reservoir. Continuously measured water-quality physical properties include...
Parallelization of a hydrological model using the message passing interface
Yiping Wu, Tiejian Li, Liqun Sun, Ji Chen
2013, Environmental Modelling and Software (43) 124-132
With the increasing knowledge about the natural processes, hydrological models such as the Soil and Water Assessment Tool (SWAT) are becoming larger and more complex with increasing computation time. Additionally, other procedures such as model calibration, which may require thousands of model iterations, can increase running time and thus further...
Groundwater conditions in Georgia, 2010–2011
Michael F. Peck, Debbie W. Gordon, Jaime A. Painter
2013, Scientific Investigations Report 2013-5084
The U.S. Geological Survey collects groundwater data and conducts studies to monitor hydrologic conditions, better define groundwater resources, and address problems related to water supply, water use, and water quality. In Georgia, water levels were monitored continuously at 186 wells during calendar year 2010 and at 181 wells during calendar...
Extending airborne electromagnetic surveys for regional active layer and permafrost mapping with remote sensing and ancillary data, Yukon Flats ecoregion, central Alaska
Neal J. Pastick, M. Torre Jorgenson, Bruce K. Wylie, Burke J. Minsley, Lei Ji, Michelle Ann Walvoord, Bruce D. Smith, Jared D. Abraham, Joshua R. Rose
2013, Permafrost and Periglacial Processes (24) 184-199
Machine-learning regression tree models were used to extrapolate airborne electromagnetic resistivity data collected along flight lines in the Yukon Flats Ecoregion, central Alaska, for regional mapping of permafrost. This method of extrapolation (r = 0.86) used subsurface resistivity, Landsat Thematic Mapper (TM) at-sensor reflectance, thermal, TM-derived spectral indices, digital elevation models and...
Annual modulation of non-volcanic tremor in northern Cascadia
Frederick Pollitz, Aaron G. Wech, Honn Kao, Roland Burgmann
2013, Journal of Geophysical Research B: Solid Earth (118) 2445-2459
Two catalogs of episodic tremor events in northern Cascadia, one from 2006 to 2012 and the other from 1997 to 2011, reveal two systematic patterns of tremor occurrence in southern Vancouver Island: (1) most individual events tend to occur in the third quarter of the year; (2) the number of...
Assessing the potential of reservoir outflow management to reduce sedimentation using continuous turbidity monitoring and reservoir modelling
Casey J. Lee, Guy M. Foster
2013, Hydrological Processes (27) 1426-1439
In-stream sensors are increasingly deployed as part of ambient water quality-monitoring networks. Temporally dense data from these networks can be used to better understand the transport of constituents through streams, lakes or reservoirs. Data from existing, continuously recording in-stream flow and water quality monitoring stations were coupled with the two-dimensional...
Short-term variability of 7Be atmospheric deposition and watershed response in a Pacific coastal stream, Monterey Bay, California, USA
Christopher H. Conaway, Curt D. Storlazzi, Amy E. Draut, Peter W. Swarzenski
2013, Journal of Environmental Radioactivity (120) 94-103
Beryllium-7 is a powerful and commonly used tracer for environmental processes such as watershed sediment provenance, soil erosion, fluvial and nearshore sediment cycling, and atmospheric fallout. However, few studies have quantified temporal or spatial variability of 7Be accumulation from atmospheric fallout, and parameters that would better define the uses and...
Simulation of groundwater flow, effects of artificial recharge, and storage volume changes in the Equus Beds aquifer near the city of Wichita, Kansas well field, 1935–2008
Brian P. Kelly, Linda L. Pickett, Cristi V. Hansen, Andrew C. Ziegler
2013, Scientific Investigations Report 2013-5042
The Equus Beds aquifer is a primary water-supply source for Wichita, Kansas and the surrounding area because of shallow depth to water, large saturated thickness, and generally good water quality. Substantial water-level declines in the Equus Beds aquifer have resulted from pumping groundwater for agricultural and municipal needs, as well...
Detecting unfrozen sediments below thermokarst lakes with surface nuclear magnetic resonance
Andrew D. Parsekian, Guido Grosse, Jan O. Walbrecker, Mike Muller-Petke, Kristina Keating, Lin Liu, Benjamin M. Jones, Rosemary Knight
2013, Geophysical Research Letters (40) 535-540
A talik is a layer or body of unfrozen ground that occurs in permafrost due to an anomaly in thermal, hydrological, or hydrochemical conditions. Information about talik geometry is important for understanding regional surface water and groundwater interactions as well as sublacustrine methane production in thermokarst lakes. Due to the...
Numerical simulation of groundwater and surface-water interactions in the Big River Management Area, central Rhode Island
John P. Masterson, Gregory E. Granato
2013, Scientific Investigations Report 2012-5077
The Rhode Island Water Resources Board is considering use of groundwater resources from the Big River Management Area in central Rhode Island because increasing water demands in Rhode Island may exceed the capacity of current sources. Previous water-resources investigations in this glacially derived, valley-fill aquifer system have focused primarily on...