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Fractal permeability model for power-law fluids in fractured porous media with rough surfaces
A novel analytical model is derived based on fractal geometry theory to characterize the
permeability of power-law fluids through fractured porous media with fractal asperities on …
permeability of power-law fluids through fractured porous media with fractal asperities on …
Poroelastic coefficients for anisotropic single and double porosity media
Closed-form expressions for poroelastic coefficients are derived for anisotropic materials
exhibiting single and double porosity. A novel feature of the formulation is the use of the …
exhibiting single and double porosity. A novel feature of the formulation is the use of the …
Multiscale modeling of coupled thermo-hydro-mechanical analysis of heterogeneous porous media
This paper presents a numerical multiscale formulation for analysis of the transient heat and
fluid flow in deformable heterogeneous porous media. Due to the heterogeneity of the …
fluid flow in deformable heterogeneous porous media. Due to the heterogeneity of the …
A multiscale approach in modeling of chemically reactive porous media
Chemical reactions occur in geotechnical, biological and synthetic porous media. Swelling
and shrinkage phenomena can be observed in clays, shales and gels, when they are in …
and shrinkage phenomena can be observed in clays, shales and gels, when they are in …
Computational homogenization of fully coupled hydro-mechanical analysis of micro-fractured porous media
In this paper, a computational homogenization technique is developed for fluid flow through
the deformable micro-fractured porous media. The coupled hydro-mechanical analysis is …
the deformable micro-fractured porous media. The coupled hydro-mechanical analysis is …
A stabilized computational nonlocal poromechanics model for dynamic analysis of saturated porous media
In this article we formulate a stable computational nonlocal poromechanics model for
dynamic analysis of saturated porous media. As a novelty, the stabilization formulation …
dynamic analysis of saturated porous media. As a novelty, the stabilization formulation …
Computational homogenization of fully coupled multiphase flow in deformable porous media
In this paper, a computational modeling tool is developed for fully coupled multiphase flow in
deformable heterogeneous porous medium that consists of complex and non-uniform micro …
deformable heterogeneous porous medium that consists of complex and non-uniform micro …
[HTML][HTML] Multiscale extended finite element method for deformable fractured porous media
Deformable fractured porous media appear in many geoscience applications. While the
extended finite element method (XFEM) has been successfully developed within the …
extended finite element method (XFEM) has been successfully developed within the …
A computational dual‐porosity approach for the coupled hydro‐mechanical analysis of fractured porous media
Dual‐porosity simulation is one of the most used and efficient approaches in modeling
fractured porous media. The performance of this approach is highly dependent on the …
fractured porous media. The performance of this approach is highly dependent on the …
Foundations and their practical implications for the constitutive coefficients of poromechanical dual-continuum models
M Ashworth, F Doster - Transport in Porous Media, 2019 - Springer
A dual-continuum model can offer a practical approach to understanding first-order
behaviours of poromechanically coupled multiscale systems. To close the governing …
behaviours of poromechanically coupled multiscale systems. To close the governing …