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Unifying diffusion and seepage for nonlinear gas transport in multiscale porous media

机译:多尺度多孔介质中非线性气体传输的统一扩散和渗流

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摘要

We unify the diffusion and seepage process for nonlinear gas transport in multiscale porous media via a proposed new general transport equation. A coherent theoretical derivation indicates the wall-molecule and molecule-molecule collisions drive the Knudsen and collective diffusive fluxes, and constitute the system pressure across the porous media. A new terminology, nominal diffusion coefficient can summarize Knudsen and collective diffusion coefficients. Physical and numerical experiments show the support of the new formulation and provide approaches to obtain the diffusion coefficient and permeability simultaneously. This work has important implication for natural gas extraction and greenhouse gases sequestration in geological formations. Published by Elsevier B.V.
机译:通过提出的新的一般输运方程,我们统一了非线性气体在多尺度多孔介质中的扩散和渗流过程。连贯的理论推导表明,壁-分子和分子-分子的碰撞驱动了克努森和集体扩散通量,并构成了穿过多孔介质的系统压力。一种新的术语,名义扩散系数可以概括Knudsen和集体扩散系数。物理和数值实验表明了新配方的支持,并提供了同时获得扩散系数和渗透率的方法。这项工作对地质构造中的天然气提取和温室气体隔离具有重要意义。由Elsevier B.V.发布

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