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首页> 外文期刊>Fractals: An interdisciplinary journal on the complex geometry of nature >FRACTAL MODEL OF GAS DIFFUSION THROUGH POROUS FIBROUS MATERIALS WITH ROUGH SURFACES
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FRACTAL MODEL OF GAS DIFFUSION THROUGH POROUS FIBROUS MATERIALS WITH ROUGH SURFACES

机译:粗糙表面多孔纤维材料的气体扩散分形模型

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Fractal model of gas diffusion through porous fibrous materials with rough surfaces is derived, in which the porous structure is simplified to be composed of a bundle of tortuous capillaries whose pore size distribution and surface roughness follow the fractal scaling laws. The analytical expression for gas relative diffusion coefficient is a function of the relative roughness, fiber radius and the other microstructural parameters (porosity, the fractal dimension for pore size distribution and tortuosity, the maximum and minimum pore diameter and the characteristic length). The proposed fractal model is validated by comparison with available experimental data and correlations. At the same time, the effect of microstructural parameters of porous fibrous materials on gas diffusion has been studied in detail. It is believed that the current model may be extended to porous materials other than fibrous materials.
机译:衍生通过多孔纤维材料的气体扩散的分形模型,其中多孔结构被简化为由孔径分布和表面粗糙度遵循分形缩放法的曲折毛细管组成。 气体相对扩散系数的分析表达是相对粗糙度,纤维半径和其他微结构参数的函数(孔隙率,用于孔径分布的分形尺寸和曲折,最大和最小孔径和特征长度)。 通过与可用的实验数据和相关性进行验证,验证了所提出的分形模型。 同时,已经详细研究了多孔纤维材料对气体扩散对气体扩散的微观结构参数的影响。 据信,目前的模型可以扩展到除纤维材料之外的多孔材料。

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