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Page 84, results 2076 - 2100

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Bedrock geology and hydrostratigraphy of the Edwards and Trinity aquifers within the Driftwood and Wimberley 7.5-minute quadrangles, Hays and Comal Counties, Texas
Allan K. Clark, Robert R. Morris
2017, Scientific Investigations Map 3386
The Edwards and Trinity aquifers are major sources of water in south-central Texas and are both classified as major aquifers by the State of Texas. The population in Hays and Comal Counties is rapidly growing, increasing demands on the area’s water resources. To help effectively manage the water resources in...
Stormwater management network effectiveness and implications for urban watershed function: A critical review
Anne J. Jefferson, Aditi S. Bhaskar, Kristina G. Hopkins, Rosemary M. Fanelli, Pedro M. Avellaneda, Sara K. McMillan
2017, Hydrological Processes (31) 4056-4080
Deleterious effects of urban stormwater are widely recognized. In several countries, regulations have been put into place to improve the conditions of receiving water bodies, but planning and engineering of stormwater control is typically carried out at smaller scales. Quantifying cumulative effectiveness of many stormwater control measures on a watershed...
Comparing catchment hydrologic response to a regional storm using specific conductivity sensors
Ashley Inserillo, Mark B. Green, James B. Shanley, Joseph Boyer
2017, Hydrological Processes (31) 1074-1085
A better understanding of stormwater generation and solute sources is needed to improve the protection of aquatic ecosystems, infrastructure, and human health from large runoff events. Much of our understanding of water and solutes produced during stormflow comes from studies of individual, small headwater catchments. This study compared many different...
Virginia flow-ecology modeling results—An initial assessment of flow reduction effects on aquatic biota
Jennifer L. Rapp, Pamela A. Reilly
2017, Open-File Report 2017-1088
BackgroundThe U.S. Geological Survey (USGS), in cooperation with the Virginia Department of Environmental Quality (DEQ), reviewed a previously compiled set of linear regression models to assess their utility in defining the response of the aquatic biological community to streamflow depletion.As part of the 2012 Virginia Healthy Watersheds Initiative (HWI) study...
Biological relevance of streamflow metrics: Regional and national perspectives
Daren M. Carlisle, Theodore E. Grantham, Ken Eng, David M. Wolock
2017, Freshwater Science (36) 927-940
Protecting the health of streams and rivers requires identifying ecologically significant attributes of the natural flow regime. Streamflow regimes are routinely quantified using a plethora of hydrologic metrics (HMs), most of which have unknown relevance to biological communities. At regional and national scales, we evaluated which of 509 commonly used...
Disturbance hydrology: Preparing for an increasingly disturbed future
Benjamin B. Mirus, Brian A. Ebel, Christian H. Mohr, Nicolas Zegre
2017, Water Resources Research (53) 10007-10016
This special issue is the result of several fruitful conference sessions on disturbance hydrology, which started at the 2013 AGU Fall Meeting in San Francisco and have continued every year since. The stimulating presentations and discussions surrounding those sessions have focused on understanding both the disruption of hydrologic functioning following...
Flood-inundation maps for North Fork Salt Creek at Nashville, Indiana
Zachary W. Martin
2017, Scientific Investigations Report 2017-5127
Digital flood-inundation maps for a 3.2-mile reach of North Fork Salt Creek at Nashville, Indiana, were created by the U.S. Geological Survey (USGS) in cooperation with the Indiana Department of Transportation. The flood-inundation maps, which can be accessed through the USGS Flood Inundation Mapping Science website at http://water.usgs.gov/osw/flood_inundation/,...
Hydrologic metrics for status-and-trends monitoring in urban and urbanizing watersheds
Derek B. Booth, Christopher P. Konrad
2017, Hydrological Processes (31) 4507-4519
Local governmental agencies are increasingly undertaking potentially costly “status-and-trends” monitoring to evaluate the effectiveness of stormwater control measures and land-use planning strategies, or to satisfy regulatory requirements. Little guidance is presently available for such efforts, and so we have explored the application, interpretation, and temporal limitations of well-established hydrologic metrics...
Streamflow characteristics from modelled runoff time series: Importance of calibration criteria selection
Sandra Poole, Marc Vis, Rodney Knight, Jan Seibert
2017, Hydrology and Earth System Sciences (21) 5443-5457
Ecologically relevant streamflow characteristics (SFCs) of ungauged catchments are often estimated from simulated runoff of hydrologic models that were originally calibrated on gauged catchments. However, SFC estimates of the gauged donor catchments and subsequently the ungauged catchments can be substantially uncertain when models are calibrated using traditional approaches based on...
Evaluation of the Eureka Manta2 Water-Quality Multiprobe Sonde
Evan F. Tillman
2017, Open-File Report 2017-1118
Two Eureka Manta2 3.5 water-quality multiprobe sondes by Eureka Water Probes were tested at the U.S. Geological Survey (USGS) Hydrologic Instrumentation Facility (HIF) against known standards over the sonde operating temperatures to verify the manufacturer’s stated accuracy specifications for pH, specific conductance (SC) at 25 degrees Celsius (°C), dissolved oxygen...
Projecting species’ vulnerability to climate change: Which uncertainty sources matter most and extrapolate best?
Valerie Steen, Helen Sofaer, Susan K. Skagen, Andrea J. Ray, Barry R. Noon
2017, Ecology and Evolution (7) 8841-8851
Species distribution models (SDMs) are commonly used to assess potential climate change impacts on biodiversity, but several critical methodological decisions are often made arbitrarily. We compare variability arising from these decisions to the uncertainty in future climate change itself. We also test whether certain choices offer improved skill for extrapolating...
Predicting landscape effects of Mississippi River diversions on soil organic carbon sequestration
Hongqing Wang, Gregory D. Steyer, Brady Couvillion, Holly J. Beck, John M Rybczyk, Victor H. Rivera-Monroy, Ken W. Krauss, Jenneke M. Visser
2017, Ecosphere (8)
Large Mississippi River (MR) diversions (peak water flow >1416 m3/s and sediment loads >165 kg/s) have been proposed as part of a suite of coastal restoration projects and are expected to rehabilitate and rebuild wetlands to alleviate the significant historic wetland loss in coastal Louisiana. These coastal wetlands are undergoing increasing eustatic...
Inequity in ecosystem service delivery: Socioeconomic gaps in the public-private conservation network
Amy M. Villamagna, Beatriz Mogollon, Paul L. Angermeier
2017, Ecology and Society (22)
Conservation areas, both public and private, are critical tools to protect biodiversity and deliver important ecosystem services (ES) to society. Although societal benefits from such ES are increasingly used to promote public support of conservation, the number of beneficiaries, their identity, and the magnitude of benefits are largely unknown for...
Sediment deposition and sources into a Mississippi River floodplain lake; Catahoula Lake, Louisiana
Karen D. Latuso, Richard F. Keim, Sammy L. King, David C. Weindorf, Ronald D. DeLaune
2017, Catena (156) 290-297
Floodplain lakes are important wetlands on many lowland floodplains of the world but depressional floodplain lakes are rare in the Mississippi River Alluvial Valley. One of the largest is Catahoula Lake, which has existed with seasonally fluctuating water levels for several thousand years but is now in an increasingly hydrologically...
Flood-inundation maps for the White River at Noblesville, Indiana
Zachary W. Martin
2017, Scientific Investigations Report 2017-5123
Digital flood-inundation maps for a 7.5-mile reach of the White River at Noblesville, Indiana, were created by the U.S. Geological Survey (USGS) in cooperation with the Indiana Department of Transportation. The flood-inundation maps, which can be accessed through the USGS Flood Inundation Mapping Science website at https://water.usgs.gov/osw/flood_inundation/, depict...
Estimating the high-arsenic domestic-well population in the conterminous United States
Joseph D. Ayotte, Laura Medalie, Sharon L. Qi, Lorraine C. Backer, Bernard T. Nolan
2017, Environmental Science & Technology (51) 12443-12454
Arsenic concentrations from 20 450 domestic wells in the U.S. were used to develop a logistic regression model of the probability of having arsenic >10 μg/L (“high arsenic”), which is presented at the county, state, and national scales. Variables representing geologic sources, geochemical, hydrologic, and physical features were among the significant...
Predicting outcomes of restored Everglades high flow: A model system for scientifically managed floodplains
Jay Choi, Judson Harvey
2017, Restoration Ecology (25) S39-S47
Restoration of higher flows through the Everglades is intended to reestablish sheetflow to rebuild a well-functioning ridge and slough landscape that supports a productive and diverse ecosystem. Our objective of the study was to use hydrologic simulations and biophysical analysis to predict restoration outcomes for five major subbasins of the...
Flow and residence times of dynamic river bank storage and sinuosity-driven hyporheic exchange
J.D. Gomez-Velez, J.L. Wilson, M.B. Cardenas, Judson Harvey
2017, Water Resources Research (53) 8572-8595
Hydrologic exchange fluxes (HEFs) vary significantly along river corridors due to spatiotemporal changes in discharge and geomorphology. This variability results in the emergence of biogeochemical hot-spots and hot-moments that ultimately control solute and energy transport and ecosystem services from the local to the watershed scales. In this work, we use...
The magnitude and origin of groundwater discharge to eastern U.S. and Gulf of Mexico coastal waters
Kevin Befus, Kevin D. Kroeger, Christopher G. Smith, Peter W. Swarzenski
2017, Geophysical Research Letters (44) 10396-10406
Fresh groundwater discharge to coastal environments contributes to the physical and chemical conditions of coastal waters, but the role of coastal groundwater at regional to continental scales remains poorly defined due to diverse hydrologic conditions and the difficulty of tracking coastal groundwater flow paths through heterogeneous subsurface materials. We use...
Hydrological responses to channelization and the formation of valley plugs and shoals
Aaron R. Pierce, Sammy L. King
2017, Wetlands (37) 513-523
Rehabilitation of floodplain systems focuses on restoring interactions between the fluvial system and floodplain, however, there is a paucity of information on the effects of valley plugs and shoals on floodplain hydrological processes. We investigated hydrologic regimes in floodplains at three valley plug sites, two shoal sites, and three unchannelized...
FEQinput—An editor for the full equations (FEQ) hydraulic modeling system
David S. Ancalle, Pablo J. Ancalle, Marian M. Domanski
2017, Fact Sheet 2017-3072
IntroductionThe Full Equations Model (FEQ) is a computer program that solves the full, dynamic equations of motion for one-dimensional unsteady hydraulic flow in open channels and through control structures. As a result, hydrologists have used FEQ to design and operate flood-control structures, delineate inundation maps, and analyze peak-flow impacts. To...
Evidence for a climate-induced ecohydrological state shift in wetland ecosystems of the southern Prairie Pothole Region
Owen P. McKenna, David M. Mushet, Donald O. Rosenberry, James W. LaBaugh
2017, Climatic Change (145) 273-287
Changing magnitude, frequency, and timing of precipitation can influence aquatic-system hydrological, geochemical, and biological processes, in some cases resulting in system-wide shifts to an alternate state. Since the early 1990s, the southern Prairie Pothole Region has been subjected to an extended period of increased wetness resulting in marked changes to...
Groundwater-level trends in the U.S. glacial aquifer system, 1964-2013
Glenn A. Hodgkins, Robert W. Dudley, Martha G. Nielsen, Benjamin Renard, Sharon L. Qi
2017, Journal of Hydrology (553) 289-303
The glacial aquifer system in the United States is a major source of water supply but previous work on historical groundwater trends across the system is lacking. Trends in annual minimum, mean, and maximum groundwater levels for 205 monitoring wells were analyzed across three regions of the system (East, Central,...
Climate change and alpine stream biology: progress, challenges, and opportunities for the future
Scott Hotaling, Debra S. Finn, J. Joseph Giersch, David W. Weisrock, Dean Jacobsen
2017, Biological Reviews (92) 2024-2045
In alpine regions worldwide, climate change is dramatically altering ecosystems and affecting biodiversity in many ways. For streams, receding alpine glaciers and snowfields, paired with altered precipitation regimes, are driving shifts in hydrology, species distributions, basal resources, and threatening the very existence of some habitats and biota. Alpine streams harbour...
Simulation of daily streamflow for 12 river basins in western Iowa using the Precipitation-Runoff Modeling System
Daniel E. Christiansen, Adel E. Haj, John C. Risley
2017, Scientific Investigations Report 2017-5091
The U.S. Geological Survey, in cooperation with the Iowa Department of Natural Resources, constructed Precipitation-Runoff Modeling System models to estimate daily streamflow for 12 river basins in western Iowa that drain into the Missouri River. The Precipitation-Runoff Modeling System is a deterministic, distributed-parameter, physical-process-based modeling system developed to evaluate the...