An efficient 3D cell-based discrete fracture-matrix flow model for digitally captured fracture networks
Lei Sun1
Mei Li1
Aly Abdelaziz1
Xuhai Tang2
Quansheng Liu2
Giovanni Grasselli1
1.Department of Civil and Mineral Engineering,University of Toronto,Toronto,ON M5S 1A4,Canada2.School of Civil Engineering,Wuhan University,Wuhan 430072,China
摘要:Complex hydraulic fracture networks are critical for enhancing permeability in unconventional reservoirs and mining indus-tries.However,accurately simulating the fluid flow in realistic fracture networks(compared to the statistical fracture net-works)is still challenging due to the fracture complexity and computational burden.This work proposes a simple yet efficient numerical framework for the flow simulation in fractured porous media obtained by 3D high-resolution images,aiming at both computational accuracy and efficiency.The fractured rock with complex fracture geometries is numerically constructed with a cell-based discrete fracture-matrix model(DFM)having implicit fracture apertures.The flow in the complex fractured porous media(including matrix flow,fracture flow,as well as exchange flow)is simulated with a pipe-based cell-centered finite volume method.The performance of this model is validated against analytical/numerical solutions.Then a lab-scale true triaxial hydraulically fractured shale sample is reconstructed,and the fluid flow in this realistic fracture network is simu-lated.Results suggest that the proposed method achieves a good balance between computational efficiency and accuracy.The complex fracture networks control the fluid flow process,and the opened natural fractures behave as primary fluid pathways.Heterogeneous and anisotropic features of fluid flow are well captured with the present model.
机标关键词:flowmodelcapturedcell-baseddigitallydiscreteefficientfracture-matrix
论文发表日期:2023-10-28
在线出版日期:2025-08-15(本平台首次上网日期,不代表文献的发表时间)
页数:20( 87-106 )
英文信息展开
国际煤炭科学技术学报(英文版)

国际煤炭科学技术学报(英文版)

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ISSN:2095-8293
年,卷(期):2023,10(5)
所属栏目:Research Articles