{"@type": "dcat:Dataset", "accessLevel": "public", "bureauCode": ["019:20"], "contactPoint": {"@type": "vcard:Contact", "fn": "Mukul Sharma", "hasEmail": "mailto:msharma@mail.utexas.edu"}, "dataQuality": true, "description": "This dataset contains the final technical report and closeout presentation for Utah FORGE Project 4-2492, which investigated advanced stimulation design and diagnostic approaches to improve fracture uniformity, inter-well connectivity, and energy recovery efficiency in enhanced geothermal systems. The report documents field stimulation and circulation experiments in wells 16A and 16B, integration of distributed fiber-optic sensing (DTS, DAS, and distributed strain), numerical modeling of fracture growth and fluid flow, and the combined use of tracer, FMI, and fiber-optic data to characterize fracture geometry, conductivity, and connectivity. Results provide guidance for improving completion and stimulation strategies for future high-temperature EGS well pairs at Utah FORGE.", "distribution": [{"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1837/4-2492%20UT%20Austin%20Closeout%20Presentation.mp4", "description": "Final presentation on the design, execution, and evaluation of innovative stimulation treatments and fiber-optic diagnostics to improve fracture uniformity, inter-well connectivity, and energy recovery efficiency at the Utah FORGE site.", "format": "mp4", "mediaType": "application/octet-stream", "title": "4-2492 UT Austin Closeout Presentation.mp4"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1837/4-2492%20UT%20Austin%20Final%20Technical%20Report.pdf", "description": "Final technical report on the design, execution, and evaluation of innovative stimulation treatments and fiber-optic diagnostics to improve fracture uniformity, inter-well connectivity, and energy recovery efficiency at the Utah FORGE site.", "format": "pdf", "mediaType": "application/pdf", "title": "4-2492 UT Austin Final Technical Report.pdf"}], "identifier": "https://data.openei.org/submissions/8677", "issued": "2025-12-31T07:00:00Z", "keyword": ["16A", "16B", "DAS", "DTS", "EGS", "FMI", "Utah FORGE", "circulation test", "distributed fiber-optic sensing", "distributed strain", "energy", "energy recovery efficiency", "fracture geometry", "fracture growth", "fracture uniformity", "geomechanics", "geophysics", "geothermal", "numerical modeling", "stimulation", "stimulation design", "technical report", "tracer", "well connectivity"], "landingPage": "https://gdr.openei.org/submissions/1837", "license": "https://creativecommons.org/licenses/by/4.0/", "modified": "2026-04-27T23:47:38Z", "programCode": ["019:006"], "projectLead": "Lauren Boyd", "projectNumber": "EE0007080", "projectTitle": "Utah FORGE", "publisher": {"@type": "org:Organization", "name": "The University of Texas at Austin"}, "spatial": "{\"type\":\"Polygon\",\"coordinates\":[[[-180,-83],[180,-83],[180,83],[-180,83],[-180,-83]]]}", "title": "Utah FORGE 4-2492: Final Report and Presentation on Innovative Stimulation Design and Fiber-Optic Diagnostics to Maximize Energy Recovery Efficiency"}