Numerical simulation of granite hydraulic fracture propagation under the influence of natural fractures
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    Abstract:

    Hydraulic fracturing technology is one of the most important technical means to successfully realize the exploitation and utilization of HDR resources. Numerical simulations can accurately predict hydraulic fracture propagation. Cohesive- zone- model was used to simulate the hydrofracture propagation characteristics of dense granite, and granite with natural fractures. The hydraulic fracture of dense granite is a simple crack. The existence of natural fractures increases the complexity of hydro- fractures. The hydrofracture development of tight granite can be divided into two phases: compression and expansion. Hydraulic fracturing can be complicated when natural fractures exist, and the length and width of hydraulic fractures are respectively 5. 7 and 1. 7 times those in dense granite. The formation of a complex fracture network needs special fracturing technology. These research results can provide theoretical support for hydraulic stimulation of an EGS reservoir.

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WANG Huang, WANG Guiling, YUE Gaofan, GAN Haonan.2020. Numerical simulation of granite hydraulic fracture propagation under the influence of natural fractures[J]. Acta Geologica Sinica,94(7):2124-2130

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History
  • Received:April 23,2020
  • Revised:May 13,2020
  • Adopted:May 14,2020
  • Online: May 19,2020
  • Published: