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Building the vegetation drought response index for Canada (VegDRI-Canada) to monitor agricultural drought: first results
Tsegaye Tadesse, Catherine Champagne, Brian D. Wardlow, Trevor A. Hadwen, Jesslyn F. Brown, Getachew B. Demisse, Yared A. Bayissa, Andrew M. Davidson
2017, GIScience and Remote Sensing (54) 230-257
Drought is a natural climatic phenomenon that occurs throughout the world and impacts many sectors of society. To help decision-makers reduce the impacts of drought, it is important to improve monitoring tools that provide relevant and timely information in support of drought mitigation decisions. Given that drought is a complex...
A land data assimilation system for sub-Saharan Africa food and water security applications
Amy McNally, Kristi Arsenault, Sujay Kumar, Shraddhanand Shukla, Pete Peterson, Shugong Wang, Chris Funk, Christa Peters-Lidard, James Verdin
2017, Scientific Data (4) 1-19
Seasonal agricultural drought monitoring systems, which rely on satellite remote sensing and land surface models (LSMs), are important for disaster risk reduction and famine early warning. These systems require the best available weather inputs, as well as a long-term historical record to contextualize current observations. This article introduces the Famine...
Modeled ecohydrological responses to climate change at seven small watersheds in the northeastern United States
Afshin Pourmokhtarian, Charles T. Driscoll, John L. Campbell, Katharine Hayhoe, Anne M. K. Stoner, Mary Beth Adams, Douglas A. Burns, Ivan Fernandez, Myron J. Mitchell, James B. Shanley
2017, Global Change Biology (23) 840-856
A cross-site analysis was conducted on seven diverse, forested watersheds in the northeastern United States to evaluate hydrological responses (evapotranspiration, soil moisture, seasonal and annual streamflow, and water stress) to projections of future climate. We used output from four atmosphere–ocean general circulation models (AOGCMs; CCSM4, HadGEM2-CC, MIROC5, and MRI-CGCM3) included...
Using diurnal temperature signals to infer vertical groundwater-surface water exchange
Dylan J. Irvine, Martin A. Briggs, Laura K. Lautz, Ryan P. Gordon, Jeffrey M. McKenzie, Ian Cartwright
2017, Groundwater (55) 10-26
Heat is a powerful tracer to quantify fluid exchange between surface water and groundwater. Temperature time series can be used to estimate pore water fluid flux, and techniques can be employed to extend these estimates to produce detailed plan-view flux maps. Key advantages of heat tracing include cost-effective sensors and...
Fish and invertebrate flow-biology relationships to support the determination of ecological flows for North Carolina
Jennifer Phelan, Thomas F. Cuffney, Lauren A. Patterson, Michele Eddy, Robert Dykes, Sam Pearsall, Chris Goudreau, Jim Mead, Fred Tarver
2017, Journal of the American Water Resources Association (53) 42-55
A method was developed to characterize fish and invertebrate responses to flow alteration in the state of North Carolina. This method involved using 80th percentile linear quantile regressions to relate six flow metrics to the diversity of riffle-run fish and benthic Ephemeroptera, Plecoptera, and Trichoptera (EPT) richness. All twelve flow-biology...
Ca isotopic geochemistry of an Antarctic aquatic system
W. Berry Lyons, Thomas D. Bullen, Kathleen A. Welch
2017, Geophysical Research Letters (44) 882-891
The McMurdo Dry Valleys, Antarctica, are a polar desert ecosystem. The hydrologic system of the dry valleys is linked to climate with ephemeral streams that flow from glacial melt during the austral summer. Past climate variations have strongly influenced the closed-basin, chemically stratified lakes on the valley floor. Results of...
Prior knowledge-based approach for associating contaminants with biological effects: A case study in the St. Croix River basin, MN, WI, USA
Anthony L. Schroeder, Dalma Martinovic-Weigelt, Gerald T. Ankley, Kathy Lee, Natalia Garcia-Reyero, Edward J. Perkins, Heiko L. Schoenfuss, Daniel L. Villeneuve
2017, Environmental Pollution (221) 427-436
Evaluating potential adverse effects of complex chemical mixtures in the environment is challenging. One way to address that challenge is through more integrated analysis of chemical monitoring and biological effects data. In the present study, water samples from five locations near two municipal wastewater treatment plants in the St. Croix...
Annual changes in seasonal river water temperatures in the eastern and western United States
Tyler Wagner, Stephen R. Midway, Joanna B. Whittier, Jefferson T. DeWeber, Craig P. Paukert
2017, Water (9)
Changes in river water temperatures are anticipated to have direct effects on thermal habitat and fish population vital rates, and therefore, understanding temporal trends in water temperatures may be necessary for predicting changes in thermal habitat and how species might respond to such changes. However, many investigations into trends in...
Factors influencing detection of the federally endangered Diamond Darter Crystallaria cincotta: Implications for long-term monitoring strategies
Austin A. Rizzo, Donald J. Brown, Stuart A. Welsh, Patricia A. Thompson
2017, The American Midland Naturalist (178) 123-131
Population monitoring is an essential component of endangered species recovery programs. The federally endangered Diamond Darter Crystallaria cincotta is in need of an effective monitoring design to improve our understanding of its distribution and track population trends. Because of their small size, cryptic coloration, and nocturnal behavior, along with limitations associated with...
Tambora and the mackerel year: Phenology and fisheries during an extreme climate event
Karen E. Alexander, William B. Leavenworth, Carolyn Hall, Steven Mattocks, Steven M. Bittner, Emily Klein, Michelle D. Staudinger, Alexander Bryan, Julianne Rosset, Theodore V. Willis, Benjamin H. Carr, Adrian Jordaan
2017, Science Advances (3)
Global warming has increased the frequency of extreme climate events, yet responses of biological and human communities are poorly understood, particularly for aquatic ecosystems and fisheries. Retrospective analysis of known outcomes may provide insights into the nature of adaptations and trajectory of subsequent conditions. We consider the 1815 eruption of...
Noble gas isotopes in mineral springs and wells within the Cascadia forearc, Washington, Oregon, and California
Patricia A. McCrory, James E. Constantz, Andrew G. Hunt
2017, Open-File Report 2016-1203
IntroductionThis U.S. Geological Survey report presents laboratory analyses along with field notes for an exploratory study to document the relative abundance of noble gases in mineral springs and water wells within the Cascadia forearc of Washington, Oregon, and California (fig. 1). This report describes 14 samples collected in 2014 and...
smwrGraphs—An R package for graphing hydrologic data, version 1.1.2
David L. Lorenz, Aliesha L. Diekoff
2017, Open-File Report 2016-1188
This report describes an R package called smwrGraphs, which consists of a collection of graphing functions for hydrologic data within R, a programming language and software environment for statistical computing. The functions in the package have been developed by the U.S. Geological Survey to create high-quality graphs for publication or...
Colorado River fish monitoring in Grand Canyon, Arizona; 2002–14 humpback chub aggregations
William R. Persons, David R. Van Haverbeke, Michael J. Dodrill
2017, Open-File Report 2016-1177
The humpback chub (Gila cypha) is an endangered cyprinid species endemic to the Colorado River. The largest remaining population of the species spawns and rears in the Little Colorado River in Grand Canyon. Construction and operation of Glen Canyon Dam has altered the main-stem Colorado River in Glen and Grand...
In situ nuclear magnetic resonance response of permafrost and active layer soil in boreal and tundra ecosystems
Mason A. Kass, Trevor P Irons, Burke J. Minsley, Neal J. Pastick, Dana R N Brown, Bruce K. Wylie
2017, The Cryosphere (11) 2943-2955
Characterization of permafrost, particularly warm and near-surface permafrost which can contain significant liquid water, is critical to understanding complex interrelationships with climate change, ecosystems, and disturbances such as wildfires. Understanding the vulnerability and resilience of permafrost requires an interdisciplinary approach, relying on (for example) geophysical investigations, ecological characterization, direct observations,...
The use of data-mining techniques for developing effective decisionsupport systems: A case study of simulating the effects ofclimate change on coastal salinity intrusion
Paul Conrads, Jr. Edwin Roehl
2017, Book chapter, Integrated environmental modelling to solve real world problems: Methods, vision and challenges
Natural-resource managers and stakeholders face difficult challenges when managing interactions between natural and societal systems. Potential changes in climate could alter interactions between environmental and societal systems and adversely affect the availability of water resources in many coastal communities. The availability of freshwater in coastal streams can be threatened by...
Glaciological measurements and mass balances from Sperry Glacier, Montana, USA, years 2005–2015
Adam Clark, Daniel B. Fagre, Erich H. Peitzsch, Blase A. Reardon, Joel T. Harper
2017, Earth System Science Data (9) 47-61
Glacier mass balance measurements help to provide an understanding of the behavior of glaciers and their response to local and regional climate. In 2005 the United States Geological Survey established a surface mass balance monitoring program on Sperry Glacier, Montana, USA. This project is the first quantitative study of mass...
Storms, channel changes, and a sediment budget for an urban-suburban stream, Difficult Run, Virginia, USA
Allen C. Gellis, Michael Myers, Gregory E. Noe, Cliff R. Hupp, Edward Shenk, Luke Myers
2017, Geomorphology (278)-128
Determining erosion and deposition rates in urban-suburban settings and how these processes are affected by large storms is important to understanding geomorphic processes in these landscapes. Sediment yields in the suburban and urban Upper Difficult Run are among the highest ever recorded in the Chesapeake Bay watershed, ranging from 161...
Preliminary evaluation of the behavior and movements of adult spring Chinook salmon in the Chehalis River, southwestern Washington, 2014
Theresa L. Liedtke, William R. Hurst, Ryan G. Tomka, Tobias J. Kock, Mara S. Zimmerman
2017, Open-File Report 2017-1004
Recent interest in flood control and restoration strategies in the Chehalis River Basin has increased the need to understand the current status and ecology of spring Chinook salmon (Oncorhynchus tshawytscha). Spring Chinook salmon have the longest exposure of all adult Chinook salmon life histories to the low-flow and high water...
Development and evaluation of a reservoir model for the Chain of Lakes in Illinois
Marian M. Domanski
2017, Scientific Investigations Report 2016-5155
Forecasts of flows entering and leaving the Chain of Lakes reservoir on the Fox River in northeastern Illinois are critical information to water-resource managers who determine the optimal operation of the dam at McHenry, Illinois, to help minimize damages to property and loss of life because of flooding on the...
Microbially mediated barite dissolution in anoxic brines
Bingjie Ouyang, Denise M. Akob, Darren S. Dunlap, Devon Renock
2017, Applied Geochemistry (76) 51-59
Fluids injected into shale formations during hydraulic fracturing of black shale return with extraordinarily high total-dissolved-solids (TDS) and high concentrations of barium (Ba) and radium (Ra). Barite, BaSO4, has been implicated as a possible source of Ba as well as a problematic mineral scale that forms on internal well surfaces,...
Depositional environment and organic matter accumulation of Upper Ordovician–Lower Silurian marine shale in the Upper Yangtze Platform, South China
Yangfang Li, Tongwei Zhang, Geoffrey S. Ellis, Deyong Shao
2017, Palaeogeography, Palaeoclimatology, Palaeoecology (466) 252-264
The main controlling factors of organic matter accumulation in the Upper Ordovician Wufeng–Lower Silurian Longmaxi Formations are complex and remain highly controversial. This study investigates the vertical variation of total organic carbon (TOC) content as well as major and trace element concentrations of four Ordovician–Silurian transition sections from the...
Hydrologic and hydraulic analyses of Great Meadow wetland, Acadia National Park, Maine
Pamela J. Lombard
2017, Scientific Investigations Report 2016-5159
The U.S. Geological Survey completed hydrologic and hydraulic analyses of Cromwell Brook and the Sieur de Monts tributary in Acadia National Park, Maine, to better understand causes of flooding in complex hydrologic and hydraulic environments, like those in the Great Meadow wetland and Sieur de Monts Spring area. Regional regression...
Evaluating mountain meadow groundwater response to Pinyon-Juniper and temperature in a great basin watershed
Rosemary W.H. Carroll, Justin L. Huntington, Keirith A. Snyder, Richard G. Niswonger, Charles Morton, Tamzen K. Stringham
2017, Ecohydrology (10) 1-18
This research highlights development and application of an integrated hydrologic model (GSFLOW) to a semiarid, snow-dominated watershed in the Great Basin to evaluate Pinyon-Juniper (PJ) and temperature controls on mountain meadow shallow groundwater. The work used Google Earth Engine Landsat satellite and gridded climate archives for model evaluation. Model simulations...
Nutrient processes at the stream-lake interface for a channelized versus unmodified stream mouth
Richard G. Niswonger, Ramon C. Naranjo, David Smith, James E. Constantz, Kip K. Allander, Donald O. Rosenberry, Bethany Neilson, Michael R. Rosen, David A. Stonestrom
2017, Water Resources Research (53) 237-256
Inorganic forms of nitrogen and phosphorous impact freshwater lakes by stimulating primary production and affecting water quality and ecosystem health. Communities around the world are motivated to sustain and restore freshwater resources and are interested in processes controlling nutrient inputs. We studied the environment where streams flow into lakes, referred...
Integrating landslide and liquefaction hazard and loss estimates with existing USGS real-time earthquake information products
Kate E. Allstadt, Eric M. Thompson, Mike Hearne, M. Anna Nowicki Jessee, J. Zhu, David J. Wald, Hakan Tanyas
2017, Conference Paper, Proceedings of the 16th World Conference on Earthquake Engineering
The U.S. Geological Survey (USGS) has made significant progress toward the rapid estimation of shaking and shakingrelated losses through their Did You Feel It? (DYFI), ShakeMap, ShakeCast, and PAGER products. However, quantitative estimates of the extent and severity of secondary hazards (e.g., landsliding, liquefaction) are not currently included in scenarios...