Numerical Modelling of Steady-State Flow in 2D Cracked Anisotropic Porous Media by Singular Integral Equations Method

被引:0
|
作者
Ahmad Pouya
Minh-Ngoc Vu
机构
[1] Université Paris-Est,
[2] Laboratoire Navier (UMR CNRS-IFSTTAR-ENPC),undefined
[3] IFSTTAR,undefined
[4] BRGM/RNSC,undefined
[5] Le Quy Don Technical University,undefined
来源
Transport in Porous Media | 2012年 / 93卷
关键词
Porous media; Cracks; Steady-state flow; Singular integral equations; Effective permeability;
D O I
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中图分类号
学科分类号
摘要
The equations governing plane steady-state flow in heterogeneous porous media containing curved-line intersecting cracks (Pouya and Ghabezloo in Transp Porous Media 84:511–532, 2010) and the potential solution obtained for these equations are considered here. The theoretical results are first completed for the mass balance at crack intersections points. Then, a numerical procedure based on a singular integral equations method is described concretely to derive this solution for cracked materials. Closed-form expressions of elementary integrals for special choice of collocation points lead to a very quick and easy numerical method. It is shown that this method can be applied efficiently to the study of the steady-state flow in cracked materials with anisotropic matrix permeability and a dense distribution of curved-line intersecting cracks. Some applications of this method to the permeability of cracked materials are given.
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页码:475 / 493
页数:18
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