Modeling Responses of Naturally Fractured Geothermal Reservoir to Low-Pressure Stimulation

Hydraulic shearing is an appealing reservoir stimulation strategy for Enhanced Geothermal Systems. It is believed that hydro-shearing is likely to simulate a fracture network that covers a relatively large volume of the reservoir whereas hydro-fracturing tends to create a small number of fractures. In this paper, we examine the geomechanical and hydraulic behaviors of natural fracture systems subjected to hydro-shearing stimulation and develop a coupled numerical model within the framework of discrete fracture network modeling. We found that in the low pressure hydro-shearing regime, the coupling between the fluid phase and the rock solid phase is relatively simple, and the numerical model is computationally efficient. Using this modified model, we study the behavior of a random fracture network subjected to hydro-shearing stimulation.

Data and Resources

Field Value
DOI 10.15121/1358114
accessLevel public
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issued 2012-01-01T07:00:00Z
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license https://creativecommons.org/licenses/by/4.0/
modified 2017-05-23T21:36:39Z
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projectLead Eric Hass
projectNumber AID 19979
projectTitle Stimulation of Complex Fracture Systems in Low Pressure Reservoirs for Development of Enhanced Geothermal Systems
publisher Lawrence Livermore National Laboratory
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  • amerigeo
  • amerigeoss
  • ckan
  • discrete-fracture-network
  • egs
  • enhanced-geothermal-system
  • geo
  • geoss
  • geothermal
  • hydraulic-fracturing
  • hydraulic-shearing
  • hydro-shearing
  • national
  • north-america
  • reservoir-modeling
  • reservoir-stimulation
  • united-states
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maintainer Pengcheng Fu
maintainer_email fu4@llnl.gov
metadata_created 2025-11-20T22:31:29.290775
metadata_modified 2025-11-20T22:31:29.290780
notes Hydraulic shearing is an appealing reservoir stimulation strategy for Enhanced Geothermal Systems. It is believed that hydro-shearing is likely to simulate a fracture network that covers a relatively large volume of the reservoir whereas hydro-fracturing tends to create a small number of fractures. In this paper, we examine the geomechanical and hydraulic behaviors of natural fracture systems subjected to hydro-shearing stimulation and develop a coupled numerical model within the framework of discrete fracture network modeling. We found that in the low pressure hydro-shearing regime, the coupling between the fluid phase and the rock solid phase is relatively simple, and the numerical model is computationally efficient. Using this modified model, we study the behavior of a random fracture network subjected to hydro-shearing stimulation.
num_resources 2
num_tags 17
title Modeling Responses of Naturally Fractured Geothermal Reservoir to Low-Pressure Stimulation