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Ecological impacts of winter water level drawdowns on lake littoral zones: A review
Allison H. Roy
2017, Aquatic Sciences (79) 803-824
Freshwater littoral zones harbor diverse ecological communities and serve numerous ecosystem functions that are controlled, in part, by natural water level fluctuations. However, human alteration of lake hydrologic regimes beyond natural fluctuations threaten littoral zone ecological integrity. One type of hydrologic alteration in lakes is winter water level drawdowns, which...
Future of Pacific salmon in the face of environmental change: Lessons from one of the world's remaining productive salmon regions
Erik R. Schoen, Mark S. Wipfli, Jamie Trammell, Daniel J. Rinella, Angelica L. Floyd, Jess Grunblatt, Molly D. McCarthy, Benjamin E. Meyer, John M. Morton, James E. Powell, Anupma Prakash, Matthew N. Reimer, Svetlana L. Stuefer, Horacio Toniolo, Brett M. Wells, Frank D. W. Witmer
2017, Fisheries (42) 538-553
Pacific salmon Oncorhynchus spp. face serious challenges from climate and landscape change, particularly in the southern portion of their native range. Conversely, climate warming appears to be allowing salmon to expand northwards into the Arctic. Between these geographic extremes, in the Gulf of Alaska region, salmon are at historically high abundances but...
A method for quantifying cloud immersion in a tropical mountain forest using time-lapse photography
Maoya Bassiouni, Martha A. Scholl, Angel J. Torres-Sanchez, Sheila F. Murphy
2017, Agricultural and Forest Meteorology (243) 100-112
Quantifying the frequency, duration, and elevation range of fog or cloud immersion is essential to estimate cloud water deposition in water budgets and to understand the ecohydrology of cloud forests. The goal of this study was to develop a low-cost and high spatial-coverage method to detect occurrence of cloud immersion...
Geothermal implications of a refined composition-age geologic map for the volcanic terrains of southeast Oregon, northeast California, and southwest Idaho, USA
Erick R. Burns, Marshall W. Gannett, David R. Sherrod, Mackenzie K. Keith, Jennifer A. Curtis, James R. Bartolino, John A. Engott, Benjamin P. Scandella, Michelle A. Stern, Alan L. Flint
2017, Conference Paper, Geothermal Resources Transactions
Sufficient temperatures to generate steam likely exist under most of the dominantly volcanic terrains of southeast Oregon, northeast California, and southeast Idaho, USA, but finding sufficient permeability to allow efficient advective heat exchange is an outstanding challenge. A new thematic interpretation of existing state-level geologic maps provides an updated and...
Methane in aquifers used for public supply in the United States
Peter B. McMahon, Kenneth Belitz, Jeannie R. B. Barlow, Bryant C. Jurgens
2017, Applied Geochemistry (84) 337-347
In 2013 to 2015, 833 public supply wells in 15 Principal aquifers in the U.S. were sampled to identify which aquifers contained high methane concentrations (>1 mg/L) and determine the geologic, hydrologic, and geochemical conditions associated with high concentrations. This study represents the first national assessment of methane in aquifers used...
Dissolved organic matter compositional change and biolability during two storm runoff events in a small sgricultural watershed
Robert S Eckard, Brian A. Pellerin, Brian A. Bergamaschi, Philip A. M. Bachand, Sandra M. Bachand, Robert G. M. Spencer, Peter J. Hernes
2017, Journal of Geophysical Research: Biogeosciences (122) 2634-2650
Agricultural watersheds are globally pervasive, supporting fundamentally different organic matter source, composition, and concentration profiles in comparison to natural systems. Similar to natural systems, agricultural storm runoff exports large amounts of organic carbon from agricultural land into waterways. But intense management of upper soil layers, waterway channelization,...
Flood-inundation maps for the Meramec River at Valley Park and at Fenton, Missouri, 2017
Benjamin J. Dietsch, Jacob N. Sappington
2017, Scientific Investigations Report 2017-5116
Two sets of digital flood-inundation map libraries that spanned a combined 16.7-mile reach of the Meramec River that extends upstream from Valley Park, Missouri, to downstream from Fenton, Mo., were created by the U.S. Geological Survey (USGS) in cooperation with the U.S. Army Corps of Engineers, St. Louis Metropolitan Sewer District, Missouri...
Riparian plant composition along hydrologic gradients in a dryland river basin and implications for a warming climate
Lindsay Reynolds, Patrick B. Shafroth
2017, Ecohydrology (10) 1-13
Droughts in dryland regions on all continents are expected to increase in severity and duration under future climate projections. In dryland regions, it is likely that minimum streamflow will decrease with some perennial streams shifting to intermittent flow under climate-driven changes in precipitation and runoff and increases in temperature. Decreasing...
Hydrogeology and simulated groundwater flow and availability in the North Fork Red River aquifer, southwest Oklahoma, 1980–2013
S. Jerrod Smith, John H. Ellis, Derrick L. Wagner, Steven M. Peterson
2017, Scientific Investigations Report 2017-5098
On September 8, 1981, the Oklahoma Water Resources Board established regulatory limits on the maximum annual yield of groundwater (343,042 acre-feet per year) and equal-proportionate-share (EPS) pumping rate (1.0 acre-foot per acre per year) for the North Fork Red River aquifer. The maximum annual yield and EPS were based on...
Projecting impacts of climate change on water availability using artificial neural network techniques
Eric D. Swain, Julieta Gomez-Fragoso, Sigfredo Torres-Gonzalez
2017, Journal of Water Resources Planning and Management (143)
Lago Loíza reservoir in east-central Puerto Rico is one of the primary sources of public water supply for the San Juan metropolitan area. To evaluate and predict the Lago Loíza water budget, an artificial neural network (ANN) technique is trained to predict river inflows. A method is...
Geospatial tools effectively estimate nonexceedance probabilities of daily streamflow at ungauged and intermittently gauged locations in Ohio
William H. Farmer, G. F. Koltun
2017, Journal of Hydrology: Regional Studies (13) 208-221
Study regionThe state of Ohio in the United States, a humid, continental climate.Study focusThe estimation of nonexceedance probabilities of daily streamflows as an alternative means of establishing the relative magnitudes of streamflows associated with hydrologic and water-quality observations.New hydrological insights for the regionSeveral methods...
Results of hydrologic monitoring of a landslide-prone hillslope in Portland’s West Hills, Oregon, 2006–2017
Joel B. Smith, Jonathan W. Godt, Rex L. Baum, Jeffrey A. Coe, William L. Ellis, Eric S. Jones, Scott F. Burns
2017, Data Series 1050
The West Hills of Portland, in the southern Tualatin Mountains, trend northwest along the west side of Portland, Oregon. These silt-mantled mountains receive significant wet-season precipitation and are prone to sliding during wet conditions, occasionally resulting in property damage or casualties. In an effort to develop a baseline for interpretive...
U.S. Geological Survey geohydrologic studies and monitoring at the Idaho National Laboratory, southeastern Idaho
Roy C. Bartholomay
2017, Fact Sheet 2017-3070
BackgroundThe U.S. Geological Survey (USGS) geohydrologic studies and monitoring at the Idaho National Laboratory (INL) is an ongoing, long-term program. This program, which began in 1949, includes hydrologic monitoring networks and investigative studies that describe the effects of waste disposal on water contained in the eastern Snake River Plain (ESRP)...
Vegetation response to invasive Tamarix control in southwestern U.S. rivers: A collaborative study including 416 sites
Eduardo González, Anna A Sher, Robert M. Anderson, Robin F. Bay, Daniel W. Bean, Gabriel J. Bissonnete, Berenger Bourgeois, David J. Cooper, Kara Dohrenwend, Kim D. Eichhorst, Hisham El Waer, Deborah K. Kennard, Rebecca Harms-Weissinger, Annie L. Henry, Lori J. Makarick, Steven M. Ostoja, Lindsay V. Reynolds, W. Wright Robinson, Patrick B. Shafroth
2017, Ecological Applications (27) 1789-1804
Most studies assessing vegetation response following control of invasive Tamarix trees along southwestern U.S. rivers have been small in scale (e.g., river reach), or at a regional scale but with poor spatial-temporal replication, and most have not included testing the effects of a now widely used biological control. We monitored plant composition...
Hydrologic impacts of landslide disturbances: Implications for remobilization and hazard persistence
Benjamin B. Mirus, Joel B. Smith, Rex L. Baum
2017, Water Resources Research (53) 8250-8265
Landslides typically alter hillslope topography, but may also change the hydrologic connectivity and subsurface water-storage dynamics. In settings where mobile materials are not completely evacuated from steep slopes, influences of landslide disturbances on hillslope hydrology and susceptibility to subsequent failures remain poorly characterized. Since landslides often recur at the site...
A hydrologic drying bias in water-resource impact analyses of anthropogenic climate change
Paul Milly, Krista A. Dunne
2017, Journal of the American Water Resources Association (53) 822-838
For water-resource planning, sensitivity of freshwater availability to anthropogenic climate change (ACC) often is analyzed with “offline” hydrologic models that use precipitation and potential evapotranspiration (Ep) as inputs. Because Ep is not a climate-model output, an intermediary model of Ep must be introduced to connect the climate model to the...
Three-dimensional hydrogeologic framework model of the Rio Grande transboundary region of New Mexico and Texas, USA, and northern Chihuahua, Mexico
Donald S. Sweetkind
2017, Scientific Investigations Report 2017-5060
As part of a U.S. Geological Survey study in cooperation with the Bureau of Reclamation, a digital three-dimensional hydrogeologic framework model was constructed for the Rio Grande transboundary region of New Mexico and Texas, USA, and northern Chihuahua, Mexico. This model was constructed to define the aquifer system geometry and...
The role of alluvial aquifer sediments in attenuating a dissolved arsenic plume
Brady A. Ziegler, Madeline E. Schreiber, Isabelle M. Cozzarelli
2017, Journal of Contaminant Hydrology (204) 90-101
In a crude-oil-contaminated sandy aquifer at the Bemidji site in northern Minnesota, biodegradation of petroleum hydrocarbons has resulted in release of naturally occurring As to groundwater under Fe-reducing conditions. This study used chemical extractions of aquifer sediments collected in 1993 and 2011–2014 to evaluate the relationship between Fe and As...
Effects of an extreme flood on trace elements in river water—From urban stream to major river basin
Larry B. Barber, Suzanne S. Paschke, William A. Battaglin, Chris Douville, Kevin C. Fitzgerald, Steffanie H. Keefe, David A. Roth, Alan M. Vajda
2017, Environmental Science & Technology (51) 10344-10356
Major floods adversely affect water quality through surface runoff, groundwater discharge, and damage to municipal water infrastructure. Despite their importance, it can be difficult to assess the effects of floods on streamwater chemistry because of challenges collecting samples and the absence of baseline data. This study documents water quality during...
Simulation and assessment of groundwater flow and groundwater and surface-water exchanges in lakes of the northeast Twin Cities Metropolitan Area, Minnesota, 2003 through 2013: Chapter B of Water levels and groundwater and surface-water exchanges in lakes of the northeast Twin Cities Metropolitan Area, Minnesota, 2002 through 2015
Perry M. Jones, Jason L. Roth, Jared J. Trost, Catherine A. Christenson, Aliesha L. Diekoff, Melinda L. Erickson
2017, Scientific Investigations Report 2016-5139-B
Water levels during 2003 through 2013 were less than mean water levels for the period 1925–2013 for several lakes in the northeast Twin Cities Metropolitan Area in Minnesota. Previous periods of low lake-water levels generally were correlated with periods with less than mean precipitation. Increases in groundwater withdrawals and land-use...
The geologic, geomorphic, and hydrologic context underlying options for long-term management of the Spirit Lake outlet near Mount St. Helens, Washington
Gordon E. Grant, Jon J. Major, Sarah L. Lewis
2017, General Technical Report PNW-GTR-954
The 1980 eruption of Mount St. Helens produced a massive landslide and consequent pyroclastic currents, deposits of which blocked the outlet to Spirit Lake. Without an outlet, the lake began to rise, threatening a breaching of the blockage and release of a massive volume of water. To mitigate the hazard...
Atmospheric rivers emerge as a global science and applications focus
F. Martin Ralph, Michael D. Dettinger, David A. Lavers, Irina Gorodetskaya, Andrew Martin, Maximilliano Viale, Allen White, Nina S. Oakley, Jonathan J. Rutz, J. Ryan Spackman, Heini Wernli, Jason M. Cordeira
2017, Bulletin of the American Meteorological Society (98) 1969-1973
Recent advances in atmospheric sciences and hydrology have identified the key role of atmo-spheric rivers (ARs) in determining the distribution of strong precipitation events in the midlatitudes. The growth of the subject is evident in the increase in scientific publications that discuss ARs (Fig. 1a). Combined with related phenomena, that...
Climate-driven variability in the occurrence of major floods across North America and Europe
Glenn A. Hodgkins, Paul H. Whitfield, Donald H. Burn, Jamie Hannaford, Benjamin Renard, Kerstin Stahl, Anne K. Fleig, Henrik Madsen, Luis Mediero, Johanna Korhonen, Conor Murphy, Donna Wilson
2017, Journal of Hydrology (552) 704-717
Concern over the potential impact of anthropogenic climate change on flooding has led to a proliferation of studies examining past flood trends. Many studies have analysed annual-maximum flow trends but few have quantified changes in major (25–100 year return period) floods, i.e. those that have the greatest societal impacts. Existing major-flood...
Structural overshoot of tree growth with climate variability and the global spectrum of drought-induced forest dieback
Alistair S. Jump, Paloma Ruiz-Benito, Sarah Greenwood, Craig D. Allen, Thomas Kitzberger, Rod Fensham, Jordi Martinez-Vilalta, Francisco Lloret
2017, Global Change Biology (23) 3742-3757
Ongoing climate change poses significant threats to plant function and distribution. Increased temperatures and altered precipitation regimes amplify drought frequency and intensity, elevating plant stress and mortality. Large-scale forest mortality events will have far-reaching impacts on carbon and hydrological cycling, biodiversity, and ecosystem services. However, biogeographical theory and global vegetation...
Fraction of young water as an indicator of aquifer vulnerability along two regional flow paths in the Mississippi embayment aquifer system, southeastern USA
James A. Kingsbury, Jeannie R. B. Barlow, Bryant C. Jurgens, Peter B. McMahon, John K. Carmichael
2017, Hydrogeology Journal (25) 1661-1678
Wells along two regional flow paths were sampled to characterize changes in water quality and the vulnerability to contamination of the Memphis aquifer across a range of hydrologic and land-use conditions in the southeastern United States. The flow paths begin in the aquifer outcrop area and end at public supply...