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Mathematical Model for Effective Gas Diffusion Coefficient in Multi-scale Fractal Porous Media

机译:多尺度分形多孔介质有效气体扩散系数的数学模型

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Based on the capillary hypothesis and fractal theory, a mathematical model for calculating the effective gas diffusion coefficient in porous media is established. By using fractal geometry theory, pore area fractal dimension, tortuosity fractal dimension and pore connectivity are introduced to quantitatively characterize the real internal structure in the porous media. An effective gas diffusion coefficient model for the fractal porous media is derived, and the influence of multi-scale porous media microstructure parameters on the effective gas diffusion coefficient is discussed. The results show that effective gas diffusion coefficient approximates to linearly increase with the increase of porosity, the pore area fractal dimension and the effective gas diffusion coefficient is positive correlation, but the tortuosity fractal dimension is negatively related to it. In the case of different porosities, the gas effective diffusion coefficient varies with the change of the pore diameter ratio, the effective gas diffusion coefficient increases with the increase of pore connectivity.
机译:基于毛细管假设和分形理论,建立了一种用于计算多孔介质中有效气体扩散系数的数学模型。通过使用分形几何论,引入孔面积分形尺寸,曲折分形尺寸和孔连接,以定量表征多孔介质中的真实内部结构。探测了分形多孔介质的有效气体扩散系数模型,讨论了多尺度多孔介质微观结构参数对有效气体扩散系数的影响。结果表明,随着孔隙率的增加,孔面积分形尺寸和有效气体扩散系数是正相关的,有效的气体扩散系数近似以线性增加,但曲折分形尺寸与其负相关。在不同孔隙率的情况下,气体有效的扩散系数随着孔径比的变化而变化,随着孔连接的增加而增加,有效的气体扩散系数增加。

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