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Characterization of pore size distribution of non-woven fibrous filter by inscribed sphere within 3D filter model

机译:三维滤光片模型中铭刻球体非织造纤维滤波器孔径分布的表征

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摘要

The pore size distribution of non-woven fibrous filter (NWFF) was characterized by inscribed sphere within 3D NWFF model created with straight fibers arranged randomly in a 3D calculation space. The size distribution of the inscribed sphere was employed as pore size distribution of the model NWFF. The effects of design parameters of NWFF, which are fiber diameter and porosity, on the pore size distribution were studied. It was shown that the pore size distribution was geometric similarity to fiber diameter. The pore size distribution curve normalized with fiber diameter was on peculiar to porosity. The number median diameter of the pore size distribution was compared with the pore sizes characterized with actual NWFFs by bubble point test, liquid permeation test, and particle challenge test. From these observations it was demonstrated that the number median diameter can be easily estimated from the porosity and fiber diameter without complex 3D simulation and it will be useful to predict the separation performance.
机译:非织造纤维过滤器(NWFF)的孔径分布的特征在于,在3D NWFF模型内,在3D计算空间中随机布置的直线纤维设定的3D NWFF模型中的铭刻。铭出球体的尺寸分布作为模型NWFF的孔径分布。研究了NWFF的设计参数,其是纤维直径和孔隙率的孔径分布。结果表明,孔径分布与纤维直径的几何相似性。用纤维直径标准化的孔径分布曲线是孔隙率的特殊性。将孔径分布的数量中值分布与特征在于泡点测试,液态渗透试验和粒子攻击试验的实际NWFF的孔径进行比较。根据这些观察结果,证明可以容易地从孔隙率和纤维直径估计数值直径,而无需复杂的3D模拟,它将有助于预测分离性能。

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