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Equivalent Permeability of Adjacent Porous Regions

机译:相邻多孔区域的等效渗透率

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摘要

Fibrous reinforcements used in the manufacturing of composite structures have multiscale nature with varying permeability depending on the local porosity. Here, we discuss a formulation for homogenization of such multiscale regions using the analogy of electrical resistance in series and parallel. Using this analogy, we have developed relationship for computing the equivalent permeability of three adjacent porous regions. The equivalent permeability is the arithmetic mean of the permeabilities of the individual regions in case of parallel arrangement whereas the harmonic mean in the series case. Using numerical simulations, the model has been validated. In case of adjacent parallel regions where permeabilities differ by more than three orders of magnitude, the model does not perform very well. Nevertheless, the models presented here are applicable in the homogenization of multiscale porous regions encountered in manufacturing of fiber reinforced composite materials.
机译:用于制造复合结构的纤维增强材料具有多尺度性质,其渗透性取决于局部孔隙率。在这里,我们讨论了使用串联和并联电阻的类比来均匀化此类多尺度区域的公式。使用这种类比,我们已经建立了用于计算三个相邻多孔区域的等效渗透率的关系。等效磁导率是在平行排列的情况下各个区域磁导率的算术平均值,而在串联情况下是谐波平均值。使用数值模拟,该模型已得到验证。如果相邻的平行区域的渗透率相差超过三个数量级,则该模型的效果将不佳。尽管如此,这里介绍的模型仍适用于纤维增强复合材料制造中遇到的多尺度多孔区域的均质化。

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