Utah FORGE 5-2557: Final Report and Presentation for the Role of Fluid and Temperature in Fracture Mechanics and Coupled THMC Processes for Enhanced Geothermal Systems
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2 resources available
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Purdue 5-2557 Closeout Presentation.mp4
MP4 -
Purdue 5-2557 Final Technical Report.pdf
PDF
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Complete Metadata
| @type | dcat:Dataset |
|---|---|
| accessLevel | public |
| bureauCode |
[ "019:20" ] |
| contactPoint |
{ "fn": "Laura Pyrak-Nolte", "@type": "vcard:Contact", "hasEmail": "mailto:ljpn@purdue.edu" } |
| dataQuality |
true
|
| description | This contains a final technical report and closeout presentation recording summarizing the results from Utah FORGE Project 5-2557 on the role of fluid pressure and temperature in fracture mechanics and coupled thermo-hydro-mechanical-chemical (THMC) processes relevant to enhanced geothermal systems. The report documents laboratory experiments, theoretical developments, and numerical simulations validated with Utah FORGE field circulation tests that quantify fracture slip, permeability evolution, and seismic/aseismic behavior. Deliverables include curated experimental datasets, validated open source tools (MOOSE FARM, extended friction theory, and AI based joint inversion), and supporting publications archived in the Geothermal Data Repository to enable reproducible research and geothermal reservoir optimization. |
| distribution |
[ { "@type": "dcat:Distribution", "title": "Purdue 5-2557 Closeout Presentation.mp4", "format": "mp4", "accessURL": "https://gdr.openei.org/files/1840/5-2557%20Purdue%20Closeout%20Presentation.mp4", "mediaType": "application/octet-stream", "description": "Final presentation on integrated laboratory experiments, theory, and numerical modeling that investigate how fluid pressure and temperature control fracture mechanics, permeability evolution, and coupled THMC processes in enhanced geothermal systems at Utah FORGE." }, { "@type": "dcat:Distribution", "title": "Purdue 5-2557 Final Technical Report.pdf", "format": "pdf", "accessURL": "https://gdr.openei.org/files/1840/5-2557%20Purdue%20Final%20Technical%20Report.pdf", "mediaType": "application/pdf", "description": "Final technical report on integrated laboratory experiments, theory, and numerical modeling that investigate how fluid pressure and temperature control fracture mechanics, permeability evolution, and coupled THMC processes in enhanced geothermal systems at Utah FORGE." } ] |
| identifier | https://data.openei.org/submissions/8671 |
| issued | 2025-11-30T07:00:00Z |
| keyword |
[ "AI", "EGS", "MOOSE FARM", "THMC", "Utah FORGE", "aseismic", "circulation tests", "energy", "fracture slip", "friction theory", "geothermal", "joint inversion", "laboratory experiments", "numerical simulations", "permeability evolution", "seismic", "technical report", "theoretical developments", "thermo-hydro-mechanical-chemical" ] |
| landingPage | https://gdr.openei.org/submissions/1840 |
| license | https://creativecommons.org/licenses/by/4.0/ |
| modified | 2026-04-27T23:26:53Z |
| programCode |
[ "019:006" ] |
| projectLead | Lauren Boyd |
| projectNumber | EE0007080 |
| projectTitle | Utah FORGE |
| publisher |
{ "name": "Purdue University", "@type": "org:Organization" } |
| spatial |
"{"type":"Polygon","coordinates":[[[-180,-83],[180,-83],[180,83],[-180,83],[-180,-83]]]}"
|
| title | Utah FORGE 5-2557: Final Report and Presentation for the Role of Fluid and Temperature in Fracture Mechanics and Coupled THMC Processes for Enhanced Geothermal Systems |