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EGS Collab Experiment 1: In-situ observation of pre-, co- and post-seismic shear slip preceding hydraulic fracturingSource

Understanding the initiation and arrest of earthquakes is one of the long-standing challenges of seismology. Here we report on direct observations of borehole displacement by a meter-sized shear rupture induced by pressurization of metamorphic rock at 1.5 km depth. We observed the acceleration of sliding, followed by fast co-seismic slip and a transient afterslip phase. Total displacements were about 7, 5.5 and 9.5 micrometers, respectively for the observed pre-slip, co-seismic slip and afterslip. The observed pre-slip lasted about 0.4 seconds. Co-seismic slip was recorded by the 1 kHz displacement recording and a 12-component array of 3-C accelerometers sampled at 100 kHz. The observed afterslip is consistent with analytical models of arrest in a velocity-strengthening region and subsequent stress relaxation. The observed slip vector agrees with the activation of a bedding plane within the phyllite, which is corroborated by relocated seismic events that were observed during the later stages of the injection experiment. This submission includes the pressure and deformation data recorded by the SIMFIP probe during the first injection at the 164 ft (50 m) notch of borehole E1-I. The injection was performed on on 05/22/2018 as part of Experiment 1 of the EGS Collab project. This data accompanies a manuscript submitted to GRL, linked in this submission.

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Tags:
E1-IEGSEGS CollabSIMFIPSURFSanford Underground Research Facilityafterslipaxialboreholeborehole displacementco-seismicdeformationdisplacementenergyfracturinggeothermalhydraulicin-situinjection testpost-seismicpre-slippressureprobeseismicshearslipslip vectorstimulation
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CSVHTML
National Renewable Energy Laboratory (NREL)about 1 year ago
INGENIOUS - Great Basin Regional Dataset CompilationSource

This is the regional dataset compilation for the INnovative Geothermal Exploration through Novel Investigations Of Undiscovered Systems (INGENIOUS) project. The primary goal of this project is to accelerate discoveries of new, commercially viable hidden geothermal systems while reducing the exploration and development risks for all geothermal resources. These datasets will be used in INGENIOUS as input features for predicting geothermal favorability throughout the Great Basin study area. Datasets consist of shapefiles, geotiffs, tabular spreadsheets, and metadata that describe: 2-meter temperature probe surveys, quaternary faults and volcanic features, geodetic shear and dilation models, heat flow, magnetotellurics (conductance), magnetics, gravity, paleogeothermal features (such as sinter and tufa deposits), seismicity, spring and well temperatures, spring and well aqueous geochemistry analyses, thermal conductivity, and fault slip and dilation tendency. For additional project information, see the INGENIOUS project site linked in the submission. Terms of use: These datasets are provided "as is", and the contributors assume no responsibility for any errors or omissions. The user assumes the entire risk associated with their use of these data and bears all responsibility in determining whether these data are fit for their intended use. These datasets may be redistributed with attribution (see citation information below). Please refer to the license information on this page for full licensing terms and conditions.

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Tags:
2-meter probecaliforniacompilationconductanceconductivitydatadilationdiscoveryearthquakesenergyexplorationfaultsfavorabilitygeochemistrygeodeticsgeospatialgeothermalgeotiffgravitygreat basingridsheat flowidahoingeniousmachine learningmagneticsmagnetotelluricsmodelingnevadaoregonpaleogeothermalplay fairwayplay fairway analysisquaternary falutsquaternary volcanicsregionalseismicityshapefilesshearsinterslipslip and dilationspringstemperaturethermal conductivitytufaundiscovered systemsutahvolcanicswells
Formats:
ZIPHTML
National Renewable Energy Laboratory (NREL)about 1 year ago
Nevada Play Fairway - Gabbs Valley Geodatabase and Modeling DataSource

This package contains data and metadata for 2-meter temperature probe survey, gravity, slip dilation, play fairway modeling, and ArcGIS geodatabase resources. This project focused on defining geothermal play fairways and development of a detailed geothermal potential map of a large transect across the Great Basin region (96,000 km2), with the primary objective of facilitating discovery of commercial-grade, blind geothermal fields (i.e. systems with no surface hot springs or fumaroles) and thereby accelerating geothermal development in this promising region.

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Tags:
ArcGISGISGabbs ValleyGravityNVNV Great BasinNevadaPFAPlay FairwayTemperaturedilationenergygeodatabasegeophysicsgeospatial datageothermalmodelingprobe surveyreportslip
Formats:
ZIP
National Renewable Energy Laboratory (NREL)about 1 year ago
Structural Data for the Columbus Salt Marsh Geothermal Area - GIS DataSource

Shapefiles and spreadsheets of structural data, including attitudes of faults and strata and slip orientations of faults. - Detailed geologic mapping of ~30 km2 was completed in the vicinity of the Columbus Marsh geothermal field to obtain critical structural data that would elucidate the structural controls of this field. - Documenting E- to ENE-striking left lateral faults and N- to NNE-striking normal faults. - Some faults cut Quaternary basalts. - This field appears to occupy a displacement transfer zone near the eastern end of a system of left-lateral faults. ENE-striking sinistral faults diffuse into a system of N- to NNE-striking normal faults within the displacement transfer zone. - Columbus Marsh therefore corresponds to an area of enhanced extension and contains a nexus of fault intersections, both conducive for geothermal activity.

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No licence known
Tags:
ArcGISColumbus MarshColumbus Salt Marsh Geothermal AreaGISGIS dataStructural ControlsStructural Datafaultingfaultsgeologic mapgeologygeospatial datageothermalshape fileshapefileshapefilesslipslip orientationstratastratigraphystructural geology
Formats:
ZIP
National Renewable Energy Laboratory (NREL)about 1 year ago