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Radon-hazard potential in the Ogden Valley, Weber County, Utah (PI-36)Vendor: Utah Geological SurveyBy: B. J. Solomon The radon-hazard potential of Ogden Valley is mapped based on geologic factors. Soil with the greatest potential for high indoor-radon levels is common west of Liberty. This soil is derived from metamorphic rock on the northwest valley margin. Answers are...
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Radon-hazard potential in the St. George area, Washington County, Utah (PI-35)Vendor: Utah Geological SurveyBy: B. J. Solomon The radon-hazard potential of the St. George area is mapped based on geologic factors. Soil with the greatest potential for high indoor-radon levels is common south of St. George. This soil is derived from local shale outcrops and from granitic...
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Radon-hazard potential in the Provo-Orem area, Utah County, Utah (PI-21)Vendor: Utah Geological SurveyBy: B. J. Solomon The radon-hazard potential of the Provo-Orem area is mapped based on geologic factors. Soil with potential for higher indoor-radon levels is common on the east bench and on alluvial fans along the Wasatch Range front. This soil is derived from...
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Radon-hazard potential in the Sandy-Draper area, Salt Lake County, Utah (PI-18)Vendor: Utah Geological SurveyBy: B. J. Solomon The radon-hazard potential of the Sandy-Draper area is mapped based on geologic factors. Soil with the greatest potential for high indoor-radon levels is common on the east bench at the mouth of Little Cottonwood Canyon. This soil is derived from...
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Earthquake fault map of a portion of Utah County, Utah (PI-11)Vendor: Utah Geological SurveyBy: UGS Staff This map shows the location of faults in Utah County. Back side of map includes information on faults, effects of surface fault rupture, when and where surface rupture is likely to occur, and what can be done to protect homes. Other...
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Earthquake fault map of a portion of Weber County, Utah (PI-1)Vendor: Utah Geological SurveyBy: UGS Staff This map shows the location of faults in Weber County. Back side of map includes information on faults, effects of surface fault rupture, when and where surface rupture is likely to occur, and what can be done to protect homes. Other...
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Utah coal core methane desorption project, final report (OFR-88)Vendor: Utah Geological SurveyBy: A. D. Smith The Utah Geological and Mineral Survey under a cooperative grant with the Department of Energy, Morgantown Energy Technology Center has collected one hundred fifty two coal core samples for determination of methane content by the Direct Method. These samples along...
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Significant drill holes of the Wasatch Front valleys including Cache Valley and Tooele Valley (OFR-82)Vendor: Utah Geological SurveyBy: W. F. Case Records of 292 significant drill holes which were drilled in the major valley areas of the Wasatch Front have been compiled into a Utah Geological and Mineral Survey database, given in this publication. Drill holes which are judged to be...
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Mapping Groundwater Quality and Chemistry Adjacent to Great Salt Lake, Utah (OFR-699)Vendor: Ground WaterBy: Stefan M. Kirby, Paul C. Inkenbrandt, and Andrew RupkeThis report details the data compilation and database construction of groundwater chemistry adjoining Great Salt Lake and its wetlands. The database includes publicly available major solute, trace constituent, nutrient, and isotopic data available near Great...
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Spring Inventory and Preliminary Groundwater Dependent Ecosystems Assesment of Manti-La Sal National Forest, Wasatch Plateau, Utah (OFR-662)Vendor: Ground WaterBy: Paul Inkenbrandt, Richard Emerson, Janae Wallace, J. Lucy Jordan, and Stefan KirbyIn cooperation with the U.S. Forest Service, the Utah Geological Survey mapped springs and groundwater dependent ecosystems on the Wasatch Plateau. Using remote sensing, GIS, and field checking, more than 400 points...
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Utah Wetland Functional Classification: Version 1 (OFR-661 )Vendor: Utah Geological SurveyBy: Richard Emerson and Ryhan SemplerThe National Wetland Inventory (NWI) is the most comprehensive wetland classification system for the state of Utah. While the NWI is the most complete and accessible classification system, the 366 unique wetland type identifiers in the state are often...
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Cache Valley Aquifer Storage and Recovery-Site Assessment for Millville City, Cache County, Utah (OFR-636)Vendor: Utah Geological SurveyBy: Paul InkenbrandtThe City of Millville, located in a prime location for aquifer storage and recovery (ASR), is having issues with elevated nitrate in the Glenridge well, a public water supply sourced from the Cache Valley principal aquifer. To alleviate high nitrate, the city...
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Compilation of 1970s Woodward-Lundgren & Associates Wasatch fault investigation reports and low-sun-angle aerial photography, Wasatch Front and Cache Valley, Utah and Idaho (OFR-632)Vendor: Utah Geological SurveyBy: Steve D. Bowman, Adam I. Hiscock, and Corey D. Unger This nine DVD set contains a descriptive 8-page report and digital files created from the Wasatch fault investigation project performed for the Utah Geologic and Mineralogical Survey (now the Utah Geological Suvey) and...
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Cache Valley Aquifer Storage and Recovery- Phase II (OFR-615)Vendor: Utah Geological SurveyBy: Paul Inkenbrandt, Kevin Thomas, and Christian HardwickNorth Logan City modified a gravel excavation site at the mouth of Green Canyon during the spring of 2011 to retain excess flow from the Green Canyon catchment. From August 2011 to March 2012, the Utah Geological...
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Preliminary Landslide Inventory Map of the 2012 Seeley Fire Area, Carbon and Emery Counties, Utah (OFR-612)Vendor: Utah Geological SurveyBy: Greg N. McDonald and Richard E. GiraudThis map presents a landslide inventory for the 2012 Seeley fire area, Carbon and Emery counties, Utah, at a scale of 1:24,000. The purposes of the map and accompanying geodatabase are to show and characterize landslides and...
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Geology of the Sulphurdale Geothermal-Resources Area, Beaver and Millard Counties, Utah (OFR-609)Vendor: Utah Geological SurveyBy: Peter D. Rowley, Edward F. Rutledge, David J. Maxwell, Gary L. Dixon, and Chester A. WallaceThis 27-page report analyzes new detailed (1:12,000 scale) geologic mapping of a 14 square mile area centered by the high-temperature (350¡F) Sulphurdale heat source, which at the surface...
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Hydrogeochemistry, Geothermometry, and Structural Setting of Thermal Springs in Northern Utah and Southeastern Idaho (OFR-605)Vendor: Utah Geological SurveyBy:Brennan Young, Katherine, Shervais, Moises Ponce-Zepeda, Sari Rosove, James EvansContains a 29-page report conducted by undergraduate researchers at Utah State University during 2010 and 2011 under the direction of Dr. James P. Evans. It includes data collected from hot springs in northern Utah and...
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Subsidence in Sedimentary Basins Due to Groundwater Withdrawal for Geothermal Energy Development (OFR-601)Vendor: Utah Geological SurveyBy: Mike Lowe Contains a 9-page report describing the potential causes of subsidence in sedimentary basins and providing recommendations for avoiding or minimizing subsidence. Land subsidence can be caused by a variety of processes, but most land subsidence in the United States is associated...
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Well Database and Maps of Salt Cycles and Potash Zones of the Paradox Basin, Utah (OFR-600)Vendor: Utah Geological SurveyBy: Terry W. Massoth Last year the Utah Geological Survey released a preliminary well database for Hite's 29 salt cycles of the Paradox Formation in the Paradox Basin of southeastern Utah (Massoth and Tripp, 2011, OFR-581), which included stratigraphic data from potash, and oil...
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Groundwater Quality Classification for the Principal Basin-Fill Aquifer, East Shore Area, Davis County, Utah (OFR-592)Vendor: Ground WaterBy: Janae Wallace, Paul Inkenbrandt, and Mike Lowe Contains a 15-page report with a 79-page appendices and 3 maps at 1:24,000 and 1:50,000 scale, in easily readable PDF format, that address groundwater quality in the east shore area of Davis County's basin-fill aquifer. The...
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