Determination of the Effective Permeability of Doubly Porous Materials by a Two-Scale Homogenization Approach

被引:0
|
作者
A.-T. Tran
H. Le-Quang
Q.-C. He
D.-H. Nguyen
机构
[1] University of Transport and Communications,Research and Application Center for Technology in Civil Engineering
[2] Univ Gustave Eiffel,MSME
[3] CNRS UMR 8208,School of Mechanical Engineering
[4] Southwest Jiaotong University,undefined
来源
Transport in Porous Media | 2022年 / 145卷
关键词
Porous materials; Double porosity; Homogenization; Permeability; Micromechanical models;
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中图分类号
学科分类号
摘要
The present work is dedicated to determining the effective permeability of doubly porous materials made of a solid phase comprising a network of interconnected pores at the nanoscale and a network of non-interconnected pores at the microscopic scale. The fluid flow at microscopic scale through the solid phase containing nanopores is described by the Darcy law, while fluid flow in the nano- and microscopic pores is governed by the Stokes equations. A two-scale homogenization approach is proposed to estimate the effective permeability of doubly porous materials in question. In the nanoscopic-to-microscopic upscaling, a micromechanical model based on the generalized self-consistent scheme (GSCS) is elaborated to estimate the microscopic permeability. In the microscopic-to-macroscopic upscaling, the equivalent inclusion method combined with the dilute, Mori–Tanaka, differential schemes is used to obtain different estimates of the macroscopic permeability. In the two-scale homogenization approach elaborated, the pore size and shape effects as well as the solid/fluid interface influence are taken into account. The results given by the proposed two-scale homogenization approach are discussed and compared with the relevant numerical results provided by the finite element method.
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页码:197 / 243
页数:46
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