3D Modeling of Hydraulic and Natural Fracture Interaction

被引:0
|
作者
Amirhossein Kamali
Ahmad Ghassemi
Dharmendra Kumar
机构
[1] The University of Oklahoma,Reservoir Geomechanics and Seismicity Research Group
[2] Pioneer Natural Resources,undefined
来源
关键词
Fracture coalescence; Hydraulic fracture; Displacement discontinuity; Natural fracture;
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中图分类号
学科分类号
摘要
An advanced numerical model is developed to investigate the different aspects of stimulation in naturally-fractured rocks. A fully-coupled 3D HF–NF “GeoFrac-3D” model is developed and used to study hydraulic and natural fracture(s) interactions in 3D without any major assumptions concerning the intersection and coalescence. Rock deformation and stresses are modeled using three-dimensional displacement discontinuity (DD) method. Contact elements are used to represent the closed natural fractures along with the Mohr–Coulomb criterion to determine the contact status of the fractures. Fracture propagation is modeled using a mixed-mode propagation scheme. A novel fracture coalescence scheme is integrated in the 3D HF–NF model to investigate intersection problems for a wide range of NF dip angles and strikes. The simulation results indicate that hydraulic fractures experience pressure drop upon intersection with permeable natural fractures. The pressure drop is followed by an increase in the injection pressure as the hydraulic fracture pressurizes the natural fracture. Moreover, the results show that the HF may propagate in other directions away from the NF when it is partially arrested by the natural fractures. Simultaneous interaction with multiple NFs and/or stress barriers was found to result in complex HF geometries with non-uniform fracture aperture distributions that could, in turn, affect proppant placement.
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页码:875 / 893
页数:18
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