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Utah FORGE: Phase 3 Native State Model - 2022 Update

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This is the Phase 3 native state model update. The Phase 3 numerical model represents a significant subsurface volume below the FORGE site footprint. The model domain of 4.0 km x 4.0 km x 4.2 km is located approximately between depths of 4000 to 4200 meters below land surface. This data archive consists of 10 files, 4 of which are simulation input files and the remaining 6 are simulation output files. There is an included readme.txt file that contains details on each of the data files. The input files include meshes, FALCON code inputs, tabulated data of water properties, temperature values, and model boundaries. The output files include simulation outfiles and point data of modeled material properties.

Citation Formats

TY - DATA AB - This is the Phase 3 native state model update. The Phase 3 numerical model represents a significant subsurface volume below the FORGE site footprint. The model domain of 4.0 km x 4.0 km x 4.2 km is located approximately between depths of 4000 to 4200 meters below land surface. This data archive consists of 10 files, 4 of which are simulation input files and the remaining 6 are simulation output files. There is an included readme.txt file that contains details on each of the data files. The input files include meshes, FALCON code inputs, tabulated data of water properties, temperature values, and model boundaries. The output files include simulation outfiles and point data of modeled material properties. AU - Podgorney, Rob A2 - Liu, R. DB - Open Energy Data Initiative (OEDI) DP - Open EI | National Renewable Energy Laboratory DO - 10.15121/1879437 KW - geothermal KW - energy KW - Utah FORGE KW - native state model KW - stress KW - pressure KW - temperature KW - 16A78-32 KW - 56-32 KW - 58-32 KW - 78-32 KW - 78B-32 KW - fractures KW - pore pressure KW - reservoir potential KW - raw data KW - simulation KW - model KW - input KW - input files KW - processed data KW - water LA - English DA - 2022/07/29 PY - 2022 PB - Idaho National Laboratory T1 - Utah FORGE: Phase 3 Native State Model - 2022 Update UR - https://doi.org/10.15121/1879437 ER -
Export Citation to RIS
Podgorney, Rob, and R. Liu. Utah FORGE: Phase 3 Native State Model - 2022 Update. Idaho National Laboratory, 29 July, 2022, GDR. https://doi.org/10.15121/1879437.
Podgorney, R., & Liu, R. (2022). Utah FORGE: Phase 3 Native State Model - 2022 Update. [Data set]. GDR. Idaho National Laboratory. https://doi.org/10.15121/1879437
Podgorney, Rob and R. Liu. Utah FORGE: Phase 3 Native State Model - 2022 Update. Idaho National Laboratory, July, 29, 2022. Distributed by GDR. https://doi.org/10.15121/1879437
@misc{OEDI_Dataset_7507, title = {Utah FORGE: Phase 3 Native State Model - 2022 Update}, author = {Podgorney, Rob and Liu, R.}, abstractNote = {This is the Phase 3 native state model update. The Phase 3 numerical model represents a significant subsurface volume below the FORGE site footprint. The model domain of 4.0 km x 4.0 km x 4.2 km is located approximately between depths of 4000 to 4200 meters below land surface. This data archive consists of 10 files, 4 of which are simulation input files and the remaining 6 are simulation output files. There is an included readme.txt file that contains details on each of the data files. The input files include meshes, FALCON code inputs, tabulated data of water properties, temperature values, and model boundaries. The output files include simulation outfiles and point data of modeled material properties.}, url = {https://gdr.openei.org/submissions/1397}, year = {2022}, howpublished = {GDR, Idaho National Laboratory, https://doi.org/10.15121/1879437}, note = {Accessed: 2025-05-04}, doi = {10.15121/1879437} }
https://dx.doi.org/10.15121/1879437

Details

Data from Jul 29, 2022

Last updated Aug 22, 2024

Submitted Jul 30, 2022

Organization

Idaho National Laboratory

Contact

Rob Podgorney

208.526.1524

Authors

Rob Podgorney

Idaho National Laboratory

R. Liu

Idaho National Laboratory

Research Areas

DOE Project Details

Project Name Utah FORGE

Project Lead Lauren Boyd

Project Number EE0007080

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