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Computational analysis of transport in three-dimensional heterogeneous materials
2020
Computing and Visualization in Science
Porous and heterogeneous materials are found in many applications from composites, membranes, chemical reactors, and other engineered materials to biological matter and natural subsurface structures. In this work we propose an integrated approach to generate, study and upscale transport equations in random and periodic porous structures. The geometry generation is based on random algorithms or ballistic deposition. In particular, a new algorithm is proposed to generate random packings of
doi:10.1007/s00791-020-00321-6
fatcat:gyl26hpty5furmyob6hvf34myy