{"@type": "dcat:Dataset", "accessLevel": "public", "bureauCode": ["019:20"], "contactPoint": {"@type": "vcard:Contact", "fn": "Ahmad Ghassemi", "hasEmail": "mailto:ahmad.ghassemi@ou.edu"}, "dataQuality": true, "description": "This final report summarizes the work done on Utah FORGE project 2-2404. The project aimed to develop a methodology integrating alternative well bore and core-based methods and reservoir-scale focal mechanisms (FM) to better estimate the reservoir stress at FORGE. The project objectives were to apply anelastic strain recovery, differential strain curve analysis, fracture mechanics analysis of drilling-induced cracks and combined them with other wellbore-based sources of stress data available from FORGE (DFIT, flowback, image logs of injection intervals, injection pressure record) to better estimate the near- wellbore stress distribution. Then, the resulting stress field would be inverted together with the reservoir-scale in-situ stress data obtained from a novel interpretation of focal mechanisms to characterize the stress and pore pressure distribution within the reservoir. Integrating these multiple sources of stress data would yield a more reliable estimate of the stress state at the km-scale for use in different FORGE reservoir development activities. The developed methodology can readily be applied to future EGS projects.", "distribution": [{"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1811/2-2404%20The%20University%20of%20Oklahoma%20Final%20Technical%20Report.pdf", "description": "Final report for the University of Oklahoma-led Utah FORGE sponsored research project \"Application of Advanced Techniques for Determination of Reservoir-Scale Stress State at Utah FORGE\".\n", "format": "pdf", "mediaType": "application/pdf", "title": "Final Technical Report.pdf"}], "identifier": "https://data.openei.org/submissions/8611", "issued": "2025-06-30T06:00:00Z", "keyword": ["EGS", "Utah FORGE", "anelastic strain recovery", "core-based", "differential strain curve", "drilling-induced cracks", "energy", "final report", "focal mechanisms", "fracture mechanics", "geothermal", "near-wellbore stress", "reservoir stress", "technical report", "well bore"], "landingPage": "https://gdr.openei.org/submissions/1811", "license": "https://creativecommons.org/licenses/by/4.0/", "modified": "2026-01-23T15:29:06Z", "programCode": ["019:006"], "projectLead": "Lauren Boyd", "projectNumber": "EE0007080", "projectTitle": "Utah FORGE", "publisher": {"@type": "org:Organization", "name": "The University of Oklahoma"}, "spatial": "{\"type\":\"Polygon\",\"coordinates\":[[[-98.9523484375,33.119383632112985],[-95.0962484375,33.119383632112985],[-95.0962484375,37.36514142861826],[-98.9523484375,37.36514142861826],[-98.9523484375,33.119383632112985]]]}", "title": "Utah FORGE 2-2404: The University of Oklahoma, Application of Advanced Techniques for Determination of Reservoir-Scale Stress State at Utah FORGE - Final Report"}