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Page 712, results 17776 - 17800

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Publication Extents

Not all publications have extents, not all extents are completely accurate
Watershed scale response to climate change--South Fork Flathead River Basin, Montana
Katherine J. Chase, Lauren E. Hay, Steven L. Markstrom
2012, Fact Sheet 2011-3124
General Circulation Model simulations of future climate through 2099 project a wide range of possible scenarios. To determine the sensitivity and potential effect of long-term climate change on the freshwater resources of the United States, the U.S. Geological Survey Global Change study, "An integrated watershed scale response to global change...
Watershed scale response to climate change--Naches River Basin, Washington
Mark C. Mastin, Lauren E. Hay, Steven L. Markstrom
2012, Fact Sheet 2011-3123
General Circulation Model simulations of future climate through 2099 project a wide range of possible scenarios. To determine the sensitivity and potential effect of long-term climate change on the freshwater resources of the United States, the U.S. Geological Survey Global Change study, "An integrated watershed scale response to global change...
Watershed scale response to climate change--Pomperaug River Watershed, Connecticut
David M. Bjerklie, Lauren E. Hay, Steven L. Markstrom
2012, Fact Sheet 2011-3122
General Circulation Model simulations of future climate through 2099 project a wide range of possible scenarios. To determine the sensitivity and potential effect of long-term climate change on the freshwater resources of the United States, the U.S. Geological Survey Global Change study, "An integrated watershed scale response to global change...
Watershed scale response to climate change--Sagehen Creek Basin, California
Steven L. Markstrom, Lauren E. Hay, R. Steven Regan
2012, Fact Sheet 2011-3121
General Circulation Model simulations of future climate through 2099 project a wide range of possible scenarios. To determine the sensitivity and potential effect of long-term climate change on the freshwater resources of the United States, the U.S. Geological Survey Global Change study, "An integrated watershed scale response to global change...
Watershed scale response to climate change--Sprague River Basin, Oregon
John Risley, Lauren E. Hay, Steven L. Markstrom
2012, Fact Sheet 2011-3120
General Circulation Model simulations of future climate through 2099 project a wide range of possible scenarios. To determine the sensitivity and potential effect of long-term climate change on the freshwater resources of the United States, the U.S. Geological Survey Global Change study, "An integrated watershed scale response to global change...
Watershed scale response to climate change--Trout Lake Basin, Wisconsin
John F. Walker, Randall J. Hunt, Lauren E. Hay, Steven L. Markstrom
2012, Fact Sheet 2011-3119
General Circulation Model simulations of future climate through 2099 project a wide range of possible scenarios. To determine the sensitivity and potential effect of long-term climate change on the freshwater resources of the United States, the U.S. Geological Survey Global Change study, "An integrated watershed scale response to global change...
Watershed scale response to climate change--Starkweather Coulee Basin, North Dakota
Kevin C. Vining, Lauren E. Hay, Steven L. Markstrom
2012, Fact Sheet 2011-3118
General Circulation Model simulations of future climate through 2099 project a wide range of possible scenarios. To determine the sensitivity and potential effect of long-term climate change on the freshwater resources of the United States, the U.S. Geological Survey Global Change study, "An integrated watershed scale response to global change...
Watershed scale response to climate change--Yampa River Basin, Colorado
Lauren E. Hay, William A. Battaglin, Steven L. Markstrom
2012, Fact Sheet 2011-3117
General Circulation Model simulations of future climate through 2099 project a wide range of possible scenarios. To determine the sensitivity and potential effect of long-term climate change on the freshwater resources of the United States, the U.S. Geological Survey Global Change study, "An integrated watershed scale response to global change...
Watershed scale response to climate change--Flint River Basin, Georgia
Lauren E. Hay, Steven L. Markstrom
2012, Fact Sheet 2011-3116
General Circulation Model simulations of future climate through 2099 project a wide range of possible scenarios. To determine the sensitivity and potential effect of long-term climate change on the freshwater resources of the United States, the U.S. Geological Survey Global Change study, "An integrated watershed scale response to global change...
Groundwater availability in the Lahaina District, west Maui, Hawai'i
Stephen B. Gingerich, John A. Engott
2012, Scientific Investigations Report 2012-5010
Most of the public water supply in the Lahaina District, west Maui, Hawai'i, is pumped from a freshwater lens in volcanic rocks. Because of population growth, groundwater withdrawals from wells in this area are expected to increase from about 5.8 million gallons per day in 2007 to more than 11...
Moderate-resolution sea surface temperature data and seasonal pattern analysis for the Arctic Ocean ecoregions
Meredith C. Payne, Deborah A. Reusser, Henry Lee II
2012, Open-File Report 2011-1246
Sea surface temperature (SST) is an important environmental characteristic in determining the suitability and sustainability of habitats for marine organisms. In particular, the fate of the Arctic Ocean, which provides critical habitat to commercially important fish, is in question. This poses an intriguing problem for future research of Arctic environments...
Integrated watershed-scale response to climate change for selected basins across the United States
Steven L. Markstrom, Lauren E. Hay, D. Christian Ward-Garrison, John C. Risley, William A. Battaglin, David M. Bjerklie, Katherine J. Chase, Daniel E. Christiansen, Robert W. Dudley, Randall J. Hunt, Kathryn M. Koczot, Mark C. Mastin, R. Steven Regan, Roland J. Viger, Kevin C. Vining, John F. Walker
2012, Scientific Investigations Report 2011-5077
A study by the U.S. Geological Survey (USGS) evaluated the hydrologic response to different projected carbon emission scenarios of the 21st century using a hydrologic simulation model. This study involved five major steps: (1) setup, calibrate and evaluated the Precipitation Runoff Modeling System (PRMS) model in 14 basins across the...
Multitemporal ALSM change detection, sediment delivery, and process mapping at an active earthflow
Stephen B. DeLong, Carol S. Prentice, George E. Hilley, Yael Ebert
2012, Earth Surface Processes and Landforms (37) 262-272
Remote mapping and measurement of surface processes at high spatial resolution is among the frontiers in Earth surface process research. Remote measurements that allow meter-scale mapping of landforms and quantification of landscape change can revolutionize the study of landscape evolution on human timescales. At Mill Gulch in northern California, USA,...
Simulation of groundwater conditions and streamflow depletion to evaluate water availability in a Freeport, Maine, watershed
Martha G. Nielsen, Daniel B. Locke
2012, Scientific Investigations Report 2011-5227
In order to evaluate water availability in the State of Maine, the U.S. Geological Survey (USGS) and the Maine Geological Survey began a cooperative investigation to provide the first rigorous evaluation of watersheds deemed "at risk" because of the combination of instream flow requirements and proportionally large water withdrawals. The...
Groundwater monitoring plan for the Missouri River alluvial aquifer in the vicinity of the City of Independence, Missouri, well field
Donald H. Wilkison
2012, Scientific Investigations Report 2012-5050
Source contributions to monitoring and supply wells, contributing recharge areas, groundwater travel times, and current (2012) understanding of alluvial water quality were used to develop a groundwater monitoring plan for the Missouri River alluvial aquifer in the vicinity of the City of Independence, Missouri well field. The plan was designed...
Preliminary geologic map of the Big Costilla Peak area, Taos County, New Mexico, and Costilla County, Colorado
Christopher J. Fridrich, Ralph R. Shroba, Adam M. Hudson
2012, Open-File Report 2012-1041
This map covers the Big Costilla Peak, New Mex.‒Colo. quadrangle and adjacent parts of three other 7.5 minute quadrangles: Amalia, New Mex.‒Colo., Latir Peak, New Mex., and Comanche Point, New Mex. The study area is in the southwesternmost part of that segment of the Sangre de Cristo Mountains known as...
Measuring gravel transport and dispersion in a mountain river using passive radio tracers
D. N. Bradley, G. E. Tucker
2012, Earth Surface Processes and Landforms (37) 1034-1045
Random walk models of fluvial sediment transport recognize that grains move intermittently, with short duration steps separated by rests that are comparatively long. These models are built upon the probability distributions of the step length and the resting time. Motivated by these models, tracer experiments have attempted to measure directly...
Ecological requirements for pallid sturgeon reproduction and recruitment in the Lower Missouri River: Annual report 2010
Aaron J. DeLonay, Robert B. Jacobson, Diana M. Papoulias, Mark L. Wildhaber, Kimberly A. Chojnacki, Emily K. Pherigo, Justin D. Haas, Gerald E. Mestl
2012, Open-File Report 2012-1009
The Comprehensive Sturgeon Research Project is a multiyear, multiagency collaborative research framework developed to provide information to support pallid sturgeon recovery and Missouri River management decisions. The project strategy integrates field and laboratory studies of sturgeon reproductive ecology, early life history, habitat requirements, and physiology. The project scope of work...
Estimation of stream temperature in support of fish production modeling under future climates in the Klamath River Basin
Lorraine E. Flint, Alan L. Flint
2012, Scientific Investigations Report 2011-5171
Stream temperature estimates under future climatic conditions were needed in support of fish production modeling for evaluation of effects of dam removal in the Klamath River Basin. To allow for the persistence of the Klamath River salmon fishery, an upcoming Secretarial Determination in 2012 will review potential changes in water...
Hurricane disturbance and recovery of energy balance, CO2 fluxes and canopy structure in a mangrove forest of the Florida Everglades
Jordan G. Barr, Vic Engel, Thomas J. Smith III, Jose D. Fuentes
2012, Agricultural and Forest Meteorology (153) 54-66
Eddy covariance (EC) estimates of carbon dioxide (CO2) fluxes and energy balance are examined to investigate the functional responses of a mature mangrove forest to a disturbance generated by Hurricane Wilma on October 24, 2005 in the Florida Everglades. At the EC site, high winds from the hurricane caused nearly...
Volcanogenic massive sulfide occurrence model
W.C. Pat Shanks III, Randolph A. Koski, Dan L. Mosier, Klaus J. Schulz, Lisa A. Morgan, John F. Slack, W. Ian Ridley, Cynthia Dusel-Bacon, Robert R. Seal II, Nadine M. Piatak
W.C. Pat Shanks III, Roland Thurston, editor(s)
2012, Scientific Investigations Report 2010-5070-C
Volcanogenic massive sulfide deposits, also known as volcanic-hosted massive sulfide, volcanic-associated massive sulfide, or seafloor massive sulfide deposits, are important sources of copper, zinc, lead, gold, and silver (Cu, Zn, Pb, Au, and Ag). These deposits form at or near the seafloor where circulating hydrothermal fluids driven by magmatic heat...
A water-budget model and estimates of groundwater recharge for Guam
Adam G. Johnson
2012, Scientific Investigations Report 2012-5028
On Guam, demand for groundwater tripled from the early 1970s to 2010. The demand for groundwater is anticipated to further increase in the near future because of population growth and a proposed military relocation to Guam. Uncertainty regarding the availability of groundwater resources to support the increased demand has prompted...
Plant distributions in the southwestern United States; a scenario assessment of the modern-day and future distribution ranges of 166 Species
Kathryn A. Thomas, Patricia P. Guertin, Leila Gass
2012, Open-File Report 2012-1020
The authors developed spatial models of the predicted modern-day suitable habitat (SH) of 166 dominant and indicator plant species of the southwestern United States (herein referred to as the Southwest) and then conducted a coarse assessment of potential future changes in the distribution of their suitable habitat under three climate-change...
Fish species of greatest conservation need in wadeable Iowa streams: current status and effectiveness of Aquatic Gap Program distribution models
Anthony R. Sindt, Clay Pierce, Michael C. Quist
2012, North American Journal of Fisheries Management (32) 135-146
Effective conservation of fish species of greatest conservation need (SGCN) requires an understanding of species–habitat relationships and distributional trends. Thus, modeling the distribution of fish species across large spatial scales may be a valuable tool for conservation planning. Our goals were to evaluate the status of 10 fish SGCN in...
RIP-ET: A riparian evapotranspiration package for MODFLOW-2005
Thomas Maddock III, Kathryn J. Baird, R. T. Hanson, Wolfgang Schmid, Hoori Ajami
2012, Techniques and Methods 6-A39
A new evapotranspiration package for the U.S. Geological Survey's groundwater-flow model, MODFLOW, is documented. The Riparian Evapotranspiration Package (RIP-ET) provides flexibility in simulating riparian and wetland transpiration not provided by the Evapotranspiration (EVT) or Segmented Function Evapotranspiration (ETS1) Packages for MODFLOW 2005. This report describes how the RIP-ET package was...