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A theoretical model to predict gas permeability for slip flow through a porous medium

机译:预测通过多孔介质的滑流的气体渗透率的理论模型

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Based on slip flow at pore level a theoretical model is presented to predict the gas permeability and thereby the overall pressure drop for flow through a porous medium. The model maps the porous structure to a number of parallel micro-channels of arbitrary but constant cross-sectional shapes which remains uniform along the flow path. The gas permeability is found to follow Klinkenberg's equation. The Klinkenberg's slip factor is obtained as a function of matrix porosity and no-slip permeability as well as gas properties. Results are generalized by assuming an arbitrary polygonal shape for the pores. The proposed methodology is simple to follow and easy to implement. Theoretical predictions are then compared to existing experimental data in the literature to observe good agreement.
机译:基于孔隙水平的滑流,提出了一种理论模型来预测气体渗透率,从而预测流经多孔介质的总压降。该模型将多孔结构映射到任意平行但横截面形状恒定的平行微通道,这些通道沿流路保持均匀。发现气体渗透率遵循Klinkenberg方程。 Klinkenberg的滑移系数是基体孔隙率,无滑移渗透率以及气体性质的函数。通过为孔假设任意多边形来概括结果。所提出的方法易于遵循且易于实施。然后将理论预测与文献中现有的实验数据进行比较,以观察到良好的一致性。

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