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Micro-scale layered structural filtration efficiency model: Probing filtration properties of non-uniform fibrous filter media

机译:微级分层结构过滤效率模型:非均匀纤维过滤介质的探测性能

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摘要

Motivated by modeling of the filtration of non-uniform fibrous filter media, a micro-scale layered structural based single fiber filtration efficiency (SFFE) model is developed to calculate filtration efficiency of clean fibrous filter media. A new methodology based on fractal theory, statistical theory and classical flow field theory is developed in the SFFE model. The microstructure of the four fibrous samples are resolved by the GeoDict code and included in the model. With the non-uniform SFFE model, evolution of the microscopic characteristics of the samples (fiber diameter, fiber orientation, pore size distribution, and permeability) can be probed. Based on analysis of the SEM image of the sample showed that the fiber diameter and orientation distribution were Gaussian. Results from four kinds of fibrous filter media are analyzed and compared with the simulated and theoretical values. The pore size distribution was independent of the grammage. The air permeability decreased with sample thickness, and the fluid had a fast flow velocity for large pores in the porous material. Compared with classical filtration theory, the non-uniform SFFE model show good agreement with the experimental and simulated values.
机译:通过建模不均匀纤维过滤介质的过滤,开发了一种微级层状结构基的单纤维过滤效率(SFFE)模型以计算清洁纤维过滤介质的过滤效率。基于分形理论,统计理论和经典流场理论的一种新方法是在SFFE模型中开发的。通过地理标记代码解决了四个纤维样品的微观结构,并包括在模型中。利用非均匀的SFFE模型,可以探测样品的微观特性(纤维直径,纤维取向,孔径分布和渗透率)的演化。基于对样品的SEM图像的分析表明,纤维直径和取向分布是高斯。分析了四种纤维过滤介质的结果,并与模拟和理论值进行比较。孔径分布与克制无关。透气性随着样品厚度降低,并且流体在多孔材料中具有快速的孔隙的流速。与经典过滤理论相比,非统一的SFFE模型与实验和模拟值展示了良好的一致性。

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