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Fort Bliss Geothermal Area Data: Temperature Profile, Logs, Schematic Model and Cross SectionSource

This dataset contains a variety of data about the Fort Bliss geothermal area, part of the southern portion of the Tularosa Basin, New Mexico. The dataset contains schematic models for the McGregor Geothermal System, a shallow temperature survey of the Fort Bliss geothermal area. The dataset also contains Century OH logs, a full temperature profile, and complete logs from well RMI 56-5, including resistivity and porosity data, drill logs with drill rate, depth, lithology, mineralogy, fractures, temperature, pit total, gases, and descriptions among other measurements as well as CDL, CNL, DIL, GR Caliper and Temperature files. A shallow (2 meter depth) temperature survey of the Fort Bliss geothermal area with 63 data points is also included. Two cross sections through the Fort Bliss area, also included, show well position and depth. The surface map included shows faults and well spatial distribution. Inferred and observed fault distributions from gravity surveys around the Fort Bliss geothermal area.

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Tags:
3D56-5ArcGISCDLCNLCaliperCenturyConceptualDILDavis DomeFaultsFor BlissFort BlissGISGeoTechMapMcGregor RangeModelNew MexicoOHPorosityRMI 56-5ResistivitySchematicTularosaTularosa BasinX ray diffractionXRDboreholecross sectioncross-sectiondepthdownholedrill logdrill logsfaultfracturegammagasesgeologygeophysicsgeopysicalgeospatial datageothermalgoethermalgravitylithologymcgregormineralogypitprofileshallowshape fileshapefilespatialstratigraphysurface mapsurveytemperaturetemperature profiletemperature surveytpwell datawell depthwell locationwell logwell positionwells
Formats:
TIFXLSXZIP
National Renewable Energy Laboratory (NREL)about 1 year ago
Material Properties for Brady Hot Springs Nevada USA from PoroTomo ProjectSource

The PoroTomo team has completed inverse modeling of the three data sets (seismology, geodesy, and hydrology) individually, as described previously. The estimated values of the material properties are registered on a three-dimensional grid with a spacing of 25 meters between nodes. The material properties are listed an Excel file. Figures show planar slices in three sets: horizontal slices in a planes normal to the vertical Z axis (Z normal), vertical slices in planes perpendicular to the dominant strike of the fault system (X normal), and vertical slices in planes parallel to the dominant strike of the fault system (Y normal). The results agree on the following points. The material is unconsolidated and/or fractured, especially in the shallow layers. The structural trends follow the fault system in strike and dip. The geodetic measurements favor the hypothesis of thermal contraction. Temporal changes in pressure, subsidence rate, and seismic amplitude are associated with changes in pumping rates during the four stages of the deployment in 2016. The modeled hydraulic conductivity is high in fault damage zones. All the observations are consistent with the conceptual model: highly permeable conduits along faults channel fluids from shallow aquifers to the deep geothermal reservoir tapped by the production wells.

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Tags:
3DBrady Hot SpringsNevadaPoissons ratioYoungs modulusconceptualconduitdensitydipenergyfaultfluidfracturedgeodesygeologygeothermalhydraulic conductivityhydrologyinterferometryinversionlithologymaterialmodelmodelingp-wavepermeableporoelastic tomographyporotomopressurepropertiespropertypumpingratereservoirs-waveseismicseismic amplitudeseismologyshallowstrain ratestrikestructuralsubsidencetemperaturethermal contractiontrendsunconsolidatedvelocityzone
Formats:
matXLSXCSVZIPPDF
National Renewable Energy Laboratory (NREL)about 1 year ago
Next Generation RivGen Power System: Kvichak River, AK Overwinter Ice StudySource

The University of Alaska Fairbanks (UAF) Alaska Hydrokinetic Energy Research Center was tasked with developing a real-time data telemetry / remote power generation system to monitor frazil ice conditions in the Kvichak River in support of the U.S. Department of Energy funded "Next Generation MHK River Power System Optimized for Performance, Durability and Survivability" project. A real-time telemetry system was requested because of the short time span between the end of the frazil ice season when the instruments would be recovered, limited vessel availability and the project end-date. To meet the project objectives, UAF designed and assembled a remote power/real-time data telemetry system that included an auto start propane generator, a small PV array, a small battery bank and line-of-sight radios as well as two sonar systems to monitor river velocity and water column acoustic backscatter strength. Both sonars included internal batteries for powering the instruments in case of failure of the shore based power system. The sonars, deployed in ~5 m of water on the bed of the Kvichak River, adjacent to the Village of Igiugig, Alaska were tethered to shore via a waterproof armored cable that conveyed power to the subsurface instruments and data from the instruments to the shore based telemetry system. The instruments were programmed to record data internally as well as to transmit data serially over the cables to the shore based system. The system was in-place between November, 2016 and June, 2017. While the real-time data telemetry system was not successful and the remote power generation power system was only partially successful, the system design included sufficient redundant power in the form of internal instrument batteries to enable the collection of nearly three months of overlapping velocity and backscatter data (from November through February) and a record of acoustic backscatter strength spanning the entire ~150 day frazil ice season between November, 2016 and ~April, 2017. This submission includes the overwinter ice study plan, dataset, and final report. The dataset includes modeled water velocity, discharge, and measured water velocity and acoustic backscatter strength in winter 2016-17 from the Kvichak River at the Village of Igiugig, Alaska, USA.

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Tags:
ADCPAKAlaskaCECEAHydrokineticIgiugigKvichak RiverMHKMarineRivGenSWIPacousticacoustic doppler current profileraxialaxisbottom mountedconditionscross flow turbinecurrentdata collectiondopplerdurabilityenergyenvironmentequipmentfiberglass tripodfrazilhorizontalicemonitoringperformanceplanpowerprofilerreal-timeremoteriversea spidershallowstudystudy plansurvivabilitysystemtelemetryturbinewinter
Formats:
PDFZIP
National Renewable Energy Laboratory (NREL)about 1 year ago
Next Generation RivGen Power System: Risk RegisterSource

Risk Register for the RivGen power system, optimized for performance, durability and survivability, in Microsoft Excel format.

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Tags:
CECHydrokineticIgiugigMHKMarineORPCRivGenanalysisassessmentaxialaxisbottom mountedcommercialcross flow turbinecurrenteconomiceconomicsenergyenvironmentalhorizontalmanagementpowerregulatoryreliabilityriskrisk registerrivershallowtechnicaltechnology
Formats:
XLSX
National Renewable Energy Laboratory (NREL)about 1 year ago
Shallow EGS Regional Resource Potential and Map - Snake River PlainSource

SMU Geothermal Lab developed a methodology to estimate shallow (1 km to 4 km) Enhanced Geothermal Systems (EGS) resource potential using an approach that utilizes recent geology and geophysical research along with new well data to improve the thermal conductivity model, mitigate impacts from groundwater flow in the thermal model, and examine radioactivity data variations. By incorporating the results of the most recent projects with the SMU shallow methodology, we developed a more accurate, updated resource estimate for the Snake River Plain (SRP). The resulting maps and resource estimates can be used by the National Renewable Energy Lab (NREL), Bureau of Land Management (BLM), and the public to determine how best to move forward with future project development. This completed effort was funded under NREL contract DE-AC36-08GO28308 and coordinated by Amanda Kolker.

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No licence known
Tags:
BLMEGSEnhanced Geothermal SystemFORGEIdahoNRELOregonPFAPlay Fairway AnalysisSRPSnake River Plainboreholebottom-hole temperatureenergygeothermalheat flowinterval equilibrium temperature loglithologymodelmodelingoil and gas wellsradioactivityradiogenic heat productionshallowtemperaturethermal conductivityvelocitywell data
Formats:
XLSXPDF
National Renewable Energy Laboratory (NREL)about 1 year ago
US Low-Temperature EGS Resource Potential EstimateSource

Shapefile of shallow, low-temperature EGS resources for the United States, and accompanying paper (submitted to GRC 2016) describing the methodology and analysis. These data are part of a very rough estimate created for use in the U.S. Department of Energy Geothermal Technology Office's Vision Study. They are not a robust estimate of low-temperature EGS resources in the U.S, and should be used accordingly.

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No licence known
Tags:
EGSGISGIS dataGeoVisionVision Studydirect useestimategeospatial datageothermallow temperaturelow-temppaperresource potentialshallowshapefilethermal energy
Formats:
DOCXZIP
National Renewable Energy Laboratory (NREL)about 1 year ago
Validation of Innovative Exploration Technologies for Newberry Volcano: Shallow Temperature DataSource

Validation of Innovative Exploration Technologies for Newberry Volcano: Temperature Readings from 7 wells drilled to date by SMU 2012

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No licence known
Tags:
EGSIETcalderadrillingexplorationgeothermalhydrothermalinnovative exploration technologiesnewberryoregonshallowtemperaturetempteraturevolcanowellwells
Formats:
PDF
National Renewable Energy Laboratory (NREL)about 1 year ago