Application of path-percolation theory and Lattice-Boltzmann method to investigate structure-property relationships in porous media

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초록

In this study, path-percolation theory was applied to randomly generate porous media, and effective porosities of these domains were determined. A statistical approach was pursued to determine effective porosity with confidence levels of 95%, 97%, and 99%. Furthermore, the Lattice-Boltzmann method was applied to obtain the velocity distribution throughout the porous channels to evaluate effective tortuosity. Two dimensional lattices with nine velocity components were utilized for fluid flow simulations. A new effective diffusivity model for porous media was developed using the effective porosity and tortuosity determined by path-percolation and Lattice-Boltzmann theories, respectively. Diffusion behavior of gasses in porous media as a function of porosity is typically unpredictable when the porosity is below 0.6, but the developed diffusion model as a function of effective porosity is shown to be useful in all effective porosity ranges.

키워드

Lattice-Boltzmann modelPath-percolation theoryPorous mediaFluid flowMass diffusionEffective diffusion coefficientFUEL-CELL MATERIALSFLOW
제목
Application of path-percolation theory and Lattice-Boltzmann method to investigate structure-property relationships in porous media
저자
Cekmer, OzgurUm, SukkeeMench, Matthew M.
DOI
10.1016/j.ijheatmasstransfer.2015.02.023
발행일
2015-07
유형
Article
저널명
International Journal of Heat and Mass Transfer
86
페이지
101 ~ 112