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Gas transport in fibrous media: Application to in-plane permeability measurement using transient flow

机译:纤维介质中的气体传输:在使用瞬变流的平面渗透率测量中的应用

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This article introduces a methodology to measure in-plane permeability of fibrous media using a transient one-dimensional air flow with absolute pressures ranging from 103 to 105 Pa. The method, based on the measurement of gas pressure at the boundaries throughout the transient flow, is convenient, clean and fast, avoids usage of a gas flow meter and offers a way to study the gas transport within fibrous media. The transport of a compressible fluid is described by several models to comply with different flow regimes which can occur during the experimental measurements. A thermal analysis is given to verify the validity of isothermal conditions during the tests. The permeability, only depending on the fibrous structure, is determined by inverse method, fitting the simulation results to the experimental data obtained using raising or dropping pressure methods. The deviation from Darcy's law caused by gas sliding effect is analysed and a relative parameter of fabric material shows a dependence in permeability, with a similar trend as the Klinkenberg sliding parameter in soils and rocks.
机译:本文介绍一种使用绝对压力范围为103至105 Pa的瞬态一维气流测量纤维介质的面内渗透率的方法。该方法基于在整个瞬态流边界处的气压测量,方便,清洁和快速,避免使用气体流量计,并提供了一种研究气体在纤维介质中传输的方法。几种模型描述了可压缩流体的运输,以符合在实验测量过程中可能发生的不同流动状态。进行热分析以验证测试期间等温条件的有效性。渗透率仅取决于纤维结构,是通过逆方法确定的,将模拟结果与使用升高或降低压力方法获得的实验数据进行拟合。分析了由气体滑动效应引起的与达西定律的偏离,并且织物材料的相对参数显示出渗透率的依赖性,其趋势与土壤和岩石中的克林肯伯格滑动参数相似。

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