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FILTRATION MODEL OF AEROSOL PARTICLES BY FIBROUS FILTERS

机译:纤维过滤器对气溶胶颗粒的过滤模型

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摘要

Aerosol filtration by fibrous filters is one of the most common methods of separating and removing particles in micro and sub-micro size ranges. The statistical genesis of this process can be regarded as the interactions and the resulting equilibrium among particle and fiber cells that comprise the system. Therefore a statistical mechanics approach, the Ising's model, combined with Monte Carlo simulation, is employed in studying the process of the aerosol filtration through fibrous filters. The process is modeled as consisting of numerous cell state exchanges driven by the difference of system energy after and before a particle moves from one cell to the other and/or deposits on a fiber cell. With the use of a simpler binary algorithm, this approach is capable of realistically simulating the complicated mechanisms involved in the filtration process. For verification, simulations are carried out for the behaviors of aerosol particles of different sizes through isotropic fiber filters with various volume fractions. Simulation results are in good agreements with reported experimental data.
机译:通过纤维过滤器进行气溶胶过滤是分离和去除微米和亚微米尺寸范围内颗粒的最常用方法之一。该过程的统计起源可以看作是组成系统的粒子和纤维细胞之间的相互作用以及由此产生的平衡。因此,采用统计力学方法(伊辛模型)与蒙特卡洛模拟相结合,来研究通过纤维过滤器进行气溶胶过滤的过程。该过程被建模为由粒子在从一个单元移动到另一个单元和/或沉积在纤维单元上之前和之后由系统能量的差异驱动的众多单元状态交换组成。通过使用更简单的二进制算法,该方法能够实际模拟过滤过程中涉及的复杂机制。为了验证,通过具有不同体积分数的各向同性纤维过滤器对不同尺寸的气溶胶颗粒的行为进行了模拟。仿真结果与报告的实验数据吻合良好。

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