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This dataset contains catchment-averaged metrics of hypsometry and normalized channel steepness for selected catchments along the Powell River region in the Eastern Tennessee seismic zone. These data are associated with Table S1 in the Supplementary Material for the related manuscript: Thompson Jobe, J. A., R. W. Briggs, R. D. Gold, L. Bauer, and C. Collett (in review), Limited evidence of Late Pleistocene tectonic surface deformation in the Eastern Tennessee Seismic Zone, Tennessee, USA.
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The water resources in Tennessee are likely to be stressed in the future by factors such as population increase, urban and suburban development, climate change, and other competing demands. Water-resource managers and policy makers will need accurate water-use data for regional water-supply planning including infrastructure investment, conservation, and cost-recovery strategies. Quantifying public-supply and self-supplied industrial water use and relating the use to effects on -water resources and natural hydrologic systems; is important for the public and policy makers. This dataset includes public-supply water-use and self-supplied industrial water-use information for the State of Tennessee in 2010. Public supply...
Understanding the number of acres of farmland irrigated and the amount of water used for irrigation is central to water-resource planning and public decision making. The U.S. Geological Survey (USGS), in cooperation with the Tennessee Department of Environment and Conservation, Division of Water Resources (TDEC-DWR), compiled available 5-year, county-level data on irrigated acres in Tennessee from 1934 to 2017 from published reports by the U.S. Census Bureau and the U.S. Department of Agriculture. Other data published in this dataset are summary statistics for irrigated acreage in Tennessee from 1934-2017, the top counties with the largest number of irrigated acres for each reporting year, as well as a county-level...
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This dataset contains point locations and notes for field observations of selected lineaments in the Eastern Tennessee seismic zone.
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Reliable information concerning where water is used, how water is used, the quantity of water used, and changes in water use over time is key in making informed water-resources management decisions. Although projections of water-use estimates are subject to a variety of contingencies, ranging from natural disasters such as droughts and floods to economic booms or disruptions, they provide a basis for planners to evaluate the adequacy of water resources to meet future needs. During 2007, the State of Tennessee experienced a drought that limited water supply to several of the utility systems. As a result, the U.S. Geological Survey (USGS), in cooperation with the Tennessee Department of Environment and Conservation,...
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This dataset contains linework of lineaments mapped from 1-m lidar data in the Eastern Tennessee Seismic Zone, Tennessee, USA. Attributes include lineament type, confidence of tectonic origin, and notes on the mapped lineament.


    map background search result map search result map Water Use in Tennessee, 2010 Irrigated Acreage in Tennessee Counties, 1934 to 2017 (ver. 1.1, June 2022) Public-Supply Water Use in 2010 and Projections of Use to 2030 by County and Grand Division in Tennessee Point Locations of Field Observations in the Eastern Tennessee Seismic Zone, Tennessee, USA Remotely mapped lineaments in the Eastern Tennessee Seismic Zone, Tennessee, USA Catchment-averaged metrics for the Powell River area in the Eastern Tennessee Seismic Zone, Tennessee, USA Catchment-averaged metrics for the Powell River area in the Eastern Tennessee Seismic Zone, Tennessee, USA Remotely mapped lineaments in the Eastern Tennessee Seismic Zone, Tennessee, USA Point Locations of Field Observations in the Eastern Tennessee Seismic Zone, Tennessee, USA Water Use in Tennessee, 2010 Public-Supply Water Use in 2010 and Projections of Use to 2030 by County and Grand Division in Tennessee Irrigated Acreage in Tennessee Counties, 1934 to 2017 (ver. 1.1, June 2022)