Utah FORGE 5-2428: Fracture Permeability Impact on Reservoir Stress and Seismic Slip Behavior - Workshop Presentation

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This is a presentation on the Fracture Permeability Impact on Seismic Slip Behavior project by Lawrence Livermore National Laboratory, presented by Dr. Kayla A. Kroll. The project's objective is to develop, apply and validate a holistic thermal, hydrologic, mechanical, and chemical (THMC) workflow that includes evaluation of induced seismic slip in EGS reservoirs. This presentation was featured in the Utah FORGE R&D Annual Workshop on September 8, 2023. The workshop provided a valuable opportunity to explore the progress made in each of the 17 Research and Development projects funded under Solicitation 2020-1 which aim to enhance our understanding of the crucial factors influencing the development of Enhanced Geothermal Systems (EGS) reservoirs and resources.

Citation Formats

TY - DATA AB - This is a presentation on the Fracture Permeability Impact on Seismic Slip Behavior project by Lawrence Livermore National Laboratory, presented by Dr. Kayla A. Kroll. The project's objective is to develop, apply and validate a holistic thermal, hydrologic, mechanical, and chemical (THMC) workflow that includes evaluation of induced seismic slip in EGS reservoirs. This presentation was featured in the Utah FORGE R&D Annual Workshop on September 8, 2023. The workshop provided a valuable opportunity to explore the progress made in each of the 17 Research and Development projects funded under Solicitation 2020-1 which aim to enhance our understanding of the crucial factors influencing the development of Enhanced Geothermal Systems (EGS) reservoirs and resources. AU - Kroll, Kayla A2 - Smith, Megan A3 - Hao, Yue A4 - Davila, Gabriela A5 - Fei, Frank A6 - Wang, Chaoyi A7 - Kottkamp, Wayne A8 - Frash, Luke A9 - Iyare, Uwalia A10 - Burghardt, Jeff A11 - Fischera, Marissa A12 - Marone, Chris DB - Geothermal Data Repository DP - Open EI | National Renewable Energy Laboratory DO - 10.15121/2004992 KW - geothermal KW - energy KW - annual workshop KW - 2023 KW - Utah FORGE KW - EGS KW - THMC KW - induced seismicity KW - seismic slip KW - earthquake simulations KW - pressure state KW - stress state KW - predictions KW - seismic hazard KW - resource optimization KW - mitigation KW - geomechanical KW - geochemical KW - slip-induced permeability KW - coupled processes KW - fracture permeability KW - presentation KW - stochastic parameter estimation KW - slip simulation LA - English DA - 2023/09/08 PY - 2023 PB - Lawrence Livermore National Laboratory T1 - Utah FORGE 5-2428: Fracture Permeability Impact on Reservoir Stress and Seismic Slip Behavior - Workshop Presentation UR - https://doi.org/10.15121/2004992 ER -
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Kroll, Kayla, et al. Utah FORGE 5-2428: Fracture Permeability Impact on Reservoir Stress and Seismic Slip Behavior - Workshop Presentation. Lawrence Livermore National Laboratory, 8 September, 2023, Geothermal Data Repository. https://doi.org/10.15121/2004992.
Kroll, K., Smith, M., Hao, Y., Davila, G., Fei, F., Wang, C., Kottkamp, W., Frash, L., Iyare, U., Burghardt, J., Fischera, M., & Marone, C. (2023). Utah FORGE 5-2428: Fracture Permeability Impact on Reservoir Stress and Seismic Slip Behavior - Workshop Presentation. [Data set]. Geothermal Data Repository. Lawrence Livermore National Laboratory. https://doi.org/10.15121/2004992
Kroll, Kayla, Megan Smith, Yue Hao, Gabriela Davila, Frank Fei, Chaoyi Wang, Wayne Kottkamp, Luke Frash, Uwalia Iyare, Jeff Burghardt, Marissa Fischera, and Chris Marone. Utah FORGE 5-2428: Fracture Permeability Impact on Reservoir Stress and Seismic Slip Behavior - Workshop Presentation. Lawrence Livermore National Laboratory, September, 8, 2023. Distributed by Geothermal Data Repository. https://doi.org/10.15121/2004992
@misc{GDR_Dataset_1545, title = {Utah FORGE 5-2428: Fracture Permeability Impact on Reservoir Stress and Seismic Slip Behavior - Workshop Presentation}, author = {Kroll, Kayla and Smith, Megan and Hao, Yue and Davila, Gabriela and Fei, Frank and Wang, Chaoyi and Kottkamp, Wayne and Frash, Luke and Iyare, Uwalia and Burghardt, Jeff and Fischera, Marissa and Marone, Chris}, abstractNote = {This is a presentation on the Fracture Permeability Impact on Seismic Slip Behavior project by Lawrence Livermore National Laboratory, presented by Dr. Kayla A. Kroll. The project's objective is to develop, apply and validate a holistic thermal, hydrologic, mechanical, and chemical (THMC) workflow that includes evaluation of induced seismic slip in EGS reservoirs. This presentation was featured in the Utah FORGE R\&D Annual Workshop on September 8, 2023. The workshop provided a valuable opportunity to explore the progress made in each of the 17 Research and Development projects funded under Solicitation 2020-1 which aim to enhance our understanding of the crucial factors influencing the development of Enhanced Geothermal Systems (EGS) reservoirs and resources.}, url = {https://gdr.openei.org/submissions/1545}, year = {2023}, howpublished = {Geothermal Data Repository, Lawrence Livermore National Laboratory, https://doi.org/10.15121/2004992}, note = {Accessed: 2025-05-05}, doi = {10.15121/2004992} }
https://dx.doi.org/10.15121/2004992

Details

Data from Sep 8, 2023

Last updated Sep 26, 2023

Submitted Sep 15, 2023

Organization

Lawrence Livermore National Laboratory

Contact

Sean Lattis

Authors

Kayla Kroll

Lawrence Livermore National Laboratory

Megan Smith

Lawrence Livermore National Laboratory

Yue Hao

Lawrence Livermore National Laboratory

Gabriela Davila

Lawrence Livermore National Laboratory

Frank Fei

Lawrence Livermore National Laboratory

Chaoyi Wang

Lawrence Livermore National Laboratory

Wayne Kottkamp

Lawrence Livermore National Laboratory

Luke Frash

Los Alamos National Laboratory

Uwalia Iyare

Los Alamos National Laboratory

Jeff Burghardt

Pacific Northwest National Laboratory

Marissa Fischera

Pacific Northwest National Laboratory

Chris Marone

Pennsylvania State University

DOE Project Details

Project Name Utah FORGE

Project Lead Lauren Boyd

Project Number EE0007080

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