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Modelling And Analysis Of Permeability Of Anisotropic Compressed Non-Woven Filters

机译:各向异性压缩非织造过滤器的渗透性建模与分析

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An existing geometrical pore-scale model for flow through isotropic spongelike media is adapted to predict flow through anisotropic non-woven glass fibre filters. Model predictions are compared to experimental results for the permeability obtained for a filter under different stages of compression to demonstrate the capability of the model to adjust to changes in porosity. The experimental data used are for a glass fibre paper with a uniform fibre diameter. The input parameters of the pore-scale model are the porosity, fibre diameter and some measure of the anisotropy between the in-plane and normal directions to the paper. Correlation between the predictions and the experimental results is satisfactory and provides confidence in the modelling procedure. It is shown that the permeability is very sensitive to changes in the level of anisotropy, i.e. the level of compression of the nonwoven material.
机译:通过各向同性海绵状介质的流动的现有几何孔径模型适于通过各向异性无纺布玻璃纤维过滤器预测流动。将模型预测与用于在压缩的不同阶段下的过滤器获得的渗透率的实验结果进行比较,以证明模型的能力适应孔隙率的变化。所用的实验数据用于具有均匀纤维直径的玻璃纤维纸。孔径模型的输入参数是孔隙率,纤维直径和纸张面内和正常方向之间的各向异性的量度。预测和实验结果之间的相关性令人满意,并对建模程序提供置信度。结果表明,渗透性对各向异性水平的变化非常敏感,即非织造材料的压缩水平。

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