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Page 71, results 1751 - 1775

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Probability of streamflow permanence model (PROSPER): A spatially continuous model of annual streamflow permanence throughout the Pacific Northwest
Kristin Jaeger, Roy Sando, Ryan R. McShane, Jason B. Dunham, David Hockman-Wert, Kendra E. Kaiser, Konrad Hafen, John Risley, Kyle W. Blasch
2019, Journal of Hydrology X (2)
The U.S. Geological Survey (USGS) has developed the PRObability of Streamflow PERmanence (PROSPER) model, a GIS raster-based empirical model that provides streamflow permanence probabilities (probabilistic predictions) of a stream channel having year-round flow for any unregulated and minimally-impaired stream channel in the Pacific Northwest region, U.S. The model provides annual...
Linkages between hydrology and seasonal variations of nutrients and periphyton in a large oligotrophic subalpine lake
Ramon C. Naranjo, Richard G. Niswonger, David Smith, Donald O. Rosenberry, Sudeep Chandra
Richard G. Niswonger, David Smith, Donald O. Rosenberry, Sudeep Chandra, editor(s)
2019, Journal of Hydrology (568) 877-890
Periphyton is important to lake ecosystems, contributing to primary production, nutrient cycling, and benthic metabolism. Increases in periphyton growth in lakes can be indicative of changes in water quality, shifts in ecosystem structure, and increases in nutrient fluxes. In oligotrophic lakes, conservationists are interested in characterizing the influence of hydrological...
Long-term streamflow trends in Hawai‘i and implications for native stream fauna
H. M. Clilverd, Y.-P. Tsang, D. M. Infante, Abigail Lynch, A. M. Strauch
2019, Hydrological Processes (33) 699-719
Climate change has fundamentally altered the water cycle in tropical islands, which is a critical driver of freshwater ecosystems. To examine how changes in streamflow regime have impacted habitat quality for native migratory aquatic species, we present a 50‐year (1967–2016) analysis of hydrologic records in 23...
Clarifying regional hydrologic controls of the Marañón River, Peru through rapid assessment to inform system-wide basin planning approaches
Alice F. Hill, Robert Stallard, Karl Rittger
2019, Elementa: Science of the anthropocene (6)
We use remote sensing to enhance the interpretation of the first baseline dataset of hydrologic, isotopic and hydrochemical variables spanning 620 km of the upper Marañón River, in Andean Peru, from the steep alpine canyons to the lower lying jungle. Remote, data-scarce river systems are under increased hydropower...
Controls of the spatial variability of denitrification potential in nontidal floodplains of the Chesapeake Bay watershed, USA
Alicia R. Korol, Gregory E. Noe, Changwoo Ahn
2019, Geoderma (338) 14-29
Identifying floodplains with high rates of denitrification will help prioritize restoration projects for the removal of nitrogen. Currently, relationships of denitrification with hydrogeomorphic, physiographic, and climate (i.e., largescale) characteristics of floodplains are relatively unknown, even though these characteristics have datasets (e.g., geographic mapping tools) that are publicly available (or soon-to-become) that could be used to understand denitrification...
Responses of biological soil crusts to rehabilitation strategies
Taylor Chock, Anita J. Antoninka, Akasha M. Faist, Matthew A. Bowker, Jayne Belnap, Nichole N. Barger
2019, Journal of Arid Environments (163) 77-85
Biological soil crusts (biocrusts) are common to dryland ecosystems and can influence a broad suite of soil ecological functions including stability and surface hydrology. Due to long recovery times following disturbance, there is a clear need for rehabilitation strategies to enhance the recovery of biocrust communities. Essential to biocrust recovery...
Modelling effects of invasive species and drought on crayfish extinction risk and population dynamics
Allyson N. Yarra, Daniel D. Magoulick
2019, Aquatic Conservation: Marine and Freshwater Ecosystems (29) 1-11
Hydrological alteration, which may be exacerbated by climate change, is known to facilitate aquatic species invasion. Altered hydrology, invasive species, and the additive effects of these stressors pose a threat to aquatic biodiversity.Understanding extinction risk in the context of these stressors is crucial for prioritizing conservation efforts. As case...
Modelling effects of invasive species and drought on crayfish extinction risk and population dynamics
Allyson N. Yarra, Daniel D. Magoulick
2019, Aquatic Conservation: Marine and Freshwater Ecosystems (29) 1-11
Hydrological alteration, which may be exacerbated by climate change, is known to facilitate aquatic species invasion. Altered hydrology, invasive species, and the additive effects of these stressors pose a threat to aquatic biodiversity.Understanding extinction risk in the context of these stressors is crucial for prioritizing conservation efforts. As case...
Linking variability in climate to wetland habitat suitability: Is it possible to forecast regional responses from simple climate measures?
Davis C, Miller D, Evan H. Campbell Grant, Brian Halstead, Patrick M. Kleeman, Susan Walls, William Barichivich
2019, Wetlands Ecology and Management (27) 39-53
Temporary wetlands have value to both ecological and social systems. Interactions between local climate and the surrounding landscape result in patterns of hydrology that are unique to temporary wetlands. These seasonal and annual fluctuations in wetland inundation contribute to community composition and richness. Thus, predicting wetland community responses to environmental...
The U. S. Geological Survey National Hydrologic Model infrastructure: Rationale, description, and application of a watershed-scale model for the conterminous United States
R. Steve Regan, Kyle E. Juracek, Lauren Hay, Steven L. Markstrom, Roland J. Viger, Jessica M. Driscoll, Jacob H. LaFontaine, Parker A. Norton
2019, Environmental Modelling & Software (111) 192-203
The ability to effectively manage water resources to meet present and future human and environmental needs is essential. Such an ability necessitates a comprehensive understanding of hydrologic processes that affect streamflow at a watershed scale. In the United States, water-resources management at scales ranging from local to national can benefit from a...
Multi-element fingerprinting of waters to evaluate connectivity among depressional wetlands
Yuxiang Yuan, Xiaoyan Zhu, David M. Mushet, Marinus L. Otte
2019, Ecological Indicators (97) 398-409
Establishing the connectivity among depressional wetlands is important for their proper management, conservation and restoration. In this study, the concentrations of 38 elements in surface water and porewater of depressional wetlands were investigated to determine chemical and hydrological connectivity of three hydrological types: recharge, flow-through, and discharge, in the Prairie Pothole Region of North...
Effects of climate-related stream factors on patterns of individual summer growth of Cutthroat Trout
Patrick Uthe, Robert K. Al-Chokhachy, Bradley Shepard, Alexander V. Zale, Jeffrey L. Kershner
2019, Transactions of the American Fisheries Society (148) 21-34
Coldwater fishes are sensitive to abiotic and biotic stream factors, which can be influenced by climate. Distributions of inland salmonids in North America have declined significantly, with many of the current strongholds located in small headwater systems that may serve as important refugia as climate change...
Revisiting the historic distribution and habitats of the Whooping Crane
Jane E. Austin, Matthew A. Hayes, Jeb A. Barzen
2019, Book chapter, Whooping cranes: Biology and conservation
The endangered Whooping Crane (Grus americana) historically had a wide distribution that covered diverse ecoregions across North America while retaining consistent habitat preferences within each ecoregion. We reevaluate the historic information compiled by Robert Porter Allen in 1952 and added 74 other records. Based on the ecological features of historic locations relative...
Testing the potential role of brine reflux in the formation of sedimentary exhalative (Sedex) ore deposits
Andrew H. Manning, Poul Emsbo
2019, Ore Geology Reviews (102) 862-874
Sedimentary exhalative (sedex) ore deposits are the world’s largest Zn-Pb deposits. While the geologic processes that formed these deposits are generally well understood, the fundamental hydrologic processes that drove these massive hydrothermal systems remain an area of debate. We use numerical modeling to test an emerging hypothesis, supported by recent...
How hydrologic connectivity regulates water quality in river corridors
Judson Harvey, Jesus Gomez-Velez, Noah Schmadel, Durelle Scott, Elizabeth W. Boyer, Richard Alexander, Ken Eng, Heather E. Golden, Albert Kettner, Christopher Konrad, Richard Moore, Jim Pizzuto, Gregory E. Schwarz, Chris Soulsby, Jay Choi
2019, Journal of the American Water Resources Association (55) 369-381
Downstream flow in rivers is repeatedly delayed by hydrologic exchange with off‐channel storage zones where biogeochemical processing occurs. We present a dimensionless metric that quantifies river connectivity as the balance between downstream flow and the exchange of water with the bed, banks, and floodplains. The degree of connectivity directly influences...
Wind River subbasin restoration annual report of USGS activities January 2017 through December 2017
Ian Jezorek
2019, Report
We used Passive Integrated Transponder (PIT)-tagging and a series of instream PIT-tag interrogation systems (PTISs) to investigate life-histories, populations, and efficacy of habitat restoration actions for wild Steelhead Oncorhynchus mykiss in the Wind River subbasin, WA. No hatchery Steelhead have been planted in the Wind River subbasin since 1997, and hatchery adults are estimated...
El Niño increases high‐tide flooding in tidal wetlands along the U.S. Pacific coast.
Arianna Goodman, Karen M. Thorne, Kevin Buffington, Chase M. Freeman, Christopher N. Janousek
2019, Journal of Geophysical Research (123) 3162-3177
Periodic oscillations between El Niño and La Niña conditions in the Pacific Basin affect oceanographic and meteorological phenomena globally, with impacts on the abundance and distribution of marine species. However, El Niño effects on estuarine hydrology and tidal wetland processes have seldom been examined rigorously. We used detailed wetland elevation...
Evaluating the relationship among wetland vertical development, elevation capital, sea-level rise and tidal marsh sustainability
Donald R. Cahoon, James C. Lynch, Charles T. Roman, John Paul Schmit, Dennis E. Skidds
2019, Estuaries and Coasts (42) 1-15
Accelerating sea-level rise and human impacts to the coast (e.g., altered sediment supply and hydrology, nutrient loading) influence the accumulation of sediment and organic matter, and thereby impact the ability of coastal tidal wetlands to maintain an elevation consistently within the vegetation growth range. Critical components of marsh sustainability are...
Tools for managing hydrologic alteration on a regional scale II: Setting targets to protect stream health
Raphael D. Mazor, Jason T. May, Ashmita Sengupta, Kenneth S. McCune, Brian P. Bledsoe, Eric D. Stein
2019, Freshwater Biology (63) 786-803
Widespread hydrologic alteration creates a need for tools to assess ecological impacts to streams that can be applied across large geographic scales. A regional framework for biologically based flow management can help catchment managers prioritise streams for protection, evaluate impacts of disturbance or interventions and provide a starting point for...
Recent advances in environmental flows science and water management—Innovation in the Anthropocene
Angela H Arthington, Jonathan Kennen, Eric D. Stein, J. Angus Webb
2019, Freshwater Biology (63) 1022-1034
The implementation of environmental flow regimes offers a promising means to protect and restore riverine, wetland and estuarine ecosystems, their critical environmental services and cultural/societal values.This Special Issue expands the scope of environmental flows and water science in theory and practice, offering 20 papers from academics, agency researchers and...
Desert wetlands record hydrologic variability within the Younger Dryas chronozone, Mojave Desert, USA
Jeffrey S. Pigati, Kathleen B. Springer, Jeffrey S. Honke
2019, Quaternary Research (91) 51-62
One of the enduring questions in the field of paleohydrology is how quickly desert wetland ecosystems responded to past episodes of abrupt climate change. Recent investigations in the Las Vegas Valley of southern Nevada have revealed that wetlands expanded and contracted on millennial and sub-millennial timescales in response to changes...
A new indicator framework for quantifying the intensity of the terrestrialwater cycle
Thomas G. Huntington, Peter Weiskel, David M. Wolock, Gregory J. McCabe
2019, Journal of Hydrology (559) 361-372
A quantitative framework for characterizing the intensity of the water cycle over land is presented, and illustrated using a spatially distributed water-balance model of the conterminous United States (CONUS). We approach water cycle intensity (WCI) from a landscape perspective; WCI is defined as the sum of precipitation (P) and actual...
Stream mercury export in response to contemporary timber harvesting methods (Pacific Coastal Mountains, Oregon, USA)
Chris S. Eckley, Collin A. Eagles-Smith, Michael T. Tate, Brandon M Kowalski, Robert Danehy, Sherri L Johnson, David P. Krabbenhoft
2019, Environmental Science & Technology (52) 1971-1980
Land-use activities can alter hydrological and biogeochemical processes that can affect the fate, transformation, and transport of mercury (Hg). Previous studies in boreal forests have shown that forestry operations can have profound, but variable effects on Hg export and methylmercury (MeHg) formation. The Pacific Northwest is an important...
Fena Valley Reservoir watershed and water-balance model updates and expansion of watershed modeling to southern Guam
Sarah N. Rosa, Lauren E. Hay
2019, Scientific Investigations Report 2017-5093
In 2014, the U.S. Geological Survey, in cooperation with the U.S. Department of Defense’s Strategic Environmental Research and Development Program, initiated a project to evaluate the potential impacts of projected climate-change on Department of Defense installations that rely on Guam’s water resources. A major task of that project was to...
The role of baseflow in dissolved solids delivery to streams in the Upper Colorado River Basin
Christine Rumsey, Matthew P. Miller, Gregory E. Schwarz, Robert M. Hirsch, David D. Susong
Gregory Schwarz, Robert M. Hirsch, David Susong, editor(s)
2019, Hydrological Processes (31) 4705-4718
Salinity has a major effect on water users in the Colorado River Basin, estimated to cause almost $300 million per year in economic damages. The Colorado River Basin Salinity Control Program implements and manages projects to reduce salinity loads, investing millions of dollars per year in irrigation...