Evaluation of a new solid boundary implementation in the lattice Boltzmann method for porous media considering
Hamed Moqtaderi1, Vahid Esfahanian
1School of Mechanical Engineering, Engineering College, University of Tehran, North Kargar Avenue, PO Box 14395-1335, Tehran, Iran. hmoqtaderi@ut.ac.ir
Abstract:
The accuracy of solid wall treatment in the lattice Boltzmann method (LBM) simulation of porous structures affects different hydraulic parameters including integral properties, such as permeability, or local phenomena, such as apparent slip. Based on an analysis of the advantages and disadvantages of the current methods, a new technique is introduced for exact boundary extraction from binary representation. Using this technique, the LBM model can simultaneously benefit from the advantages of existing approaches, i.e. the real micro-/nanostructure obtained with X-ray computed tomography, and a reduction in the resolution requirement. To evaluate the technique, permeability and slip length on the solid walls are investigated for a porous gas diffusion layer. The results show acceptable accuracy improvement balanced with computational costs.
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