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Utah FORGE 9-3635: Testing of Proppants for EGS and Simulation of EM Fracture Mapping Using Electrically-Conductive Proppants - 2025 Workshop Presentation
This is a presentation on High-Temperature Testing of Proppants for EGS and Simulation of Electromagnetic Fracture Mapping Using Electrically-Conductive Proppants by Stevens Institute of Technology, presented by Dr. Cheng Chen. This video slide presentation describes laboratory tests of electrically-conductive (EC) proppants under FORGE-relevant temperature and pressure conditions, hydraulic fracturing simulations, and electromagnetic modeling to evaluate proppant performance, improve fracture imaging, and enhance confidence in proppant-based EGS operations. This presentation was featured at the Utah FORGE R&D Annual Workshop on September 10, 2025. The workshop offered a valuable opportunity to review the progress of Research and Development projects funded under Solicitation 2022-2, which aim to improve our understanding of the key factors influencing Enhanced Geothermal System (EGS) reservoir and resource development.
Complete Metadata
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|---|---|
| accessLevel | public |
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| contactPoint |
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"fn": "Cheng Chen",
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"hasEmail": "mailto:cchen6@stevens.edu"
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| description | This is a presentation on High-Temperature Testing of Proppants for EGS and Simulation of Electromagnetic Fracture Mapping Using Electrically-Conductive Proppants by Stevens Institute of Technology, presented by Dr. Cheng Chen. This video slide presentation describes laboratory tests of electrically-conductive (EC) proppants under FORGE-relevant temperature and pressure conditions, hydraulic fracturing simulations, and electromagnetic modeling to evaluate proppant performance, improve fracture imaging, and enhance confidence in proppant-based EGS operations. This presentation was featured at the Utah FORGE R&D Annual Workshop on September 10, 2025. The workshop offered a valuable opportunity to review the progress of Research and Development projects funded under Solicitation 2022-2, which aim to improve our understanding of the key factors influencing Enhanced Geothermal System (EGS) reservoir and resource development. |
| distribution |
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{
"@type": "dcat:Distribution",
"title": "9-3635 - 2025 Annual Report.pdf",
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"accessURL": "https://gdr.openei.org/files/1790/9-3635_Stevens_Institute_of_Technology%202025%20Annual%20Report.pdf",
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"description": "This 2025 report summarizes the progress of the Utah FORGE project 9-3635."
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"description": "These are the slides presented at the 2025 Utah FORGE annual workshop for project 9-3635."
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|
| identifier | https://data.openei.org/submissions/8534 |
| issued | 2025-09-18T06:00:00Z |
| keyword |
[
"2025 Annual Workshop",
"EGS",
"Utah FORGE",
"electrically-conductive proppants",
"electromagnetics",
"energy",
"fracture imaging",
"fracture mapping",
"geothermal",
"high-temperature testing",
"hydraulic fracturing",
"laboratory testing",
"presentation",
"presentation recording",
"presentation slides",
"proppants",
"report"
]
|
| landingPage | https://gdr.openei.org/submissions/1790 |
| license | https://creativecommons.org/licenses/by/4.0/ |
| modified | 2025-09-21T21:35:46Z |
| programCode |
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"019:006"
]
|
| projectLead | Lauren Boyd |
| projectNumber | EE0007080 |
| projectTitle | Utah FORGE |
| publisher |
{
"name": "Stevens Institute of Technology",
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|
| title | Utah FORGE 9-3635: Testing of Proppants for EGS and Simulation of EM Fracture Mapping Using Electrically-Conductive Proppants - 2025 Workshop Presentation |