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首页> 外文期刊>Journal of Aerosol Science >A simulation of unsteady-state filtration via nanofiber media at reduced operating pressures
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A simulation of unsteady-state filtration via nanofiber media at reduced operating pressures

机译:在降低的工作压力下通过纳米纤维介质进行的非稳态过滤的模拟

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摘要

In this work, 3-D structures resembling nanofiber (d_f < 200 nm) filter media are simulated and challenged with nanoparticle aerosols at reduced operating pressures. For the range of fiber diameters considered in this paper, the free molecular flow regime is dominant. Therefore, the disturbances to the air flow field caused by the fibers are neglected. Nanoparticle capture efficiency of nanofiber webs, due to Brownian diffusion and interception, is calculated for particle diameters ranging from 50 to 500 nm. Our simulations show that by decreasing the fiber diameter, the minimum collection efficiency of filtration media having identical pressure drops increases. This effect is accompanied by a decrease in the particle diameter associated with these minimum efficiencies-the most penetrating particle diameter. Moreover, it is demonstrated that increasing the flow temperature enhances the nanoparticle capture efficiency of nanofiber filters. Allowing the particles to deposit on the fibers as well as each other, the caking process of such nanofiber filters is simulated for different monodisperse and polydisperse aerosols at different temperatures. The statistical information regarding the composition of nanoparticle cakes formed at high and low temperatures is presented and discussed.
机译:在这项工作中,模拟了类似于纳米纤维(d_f <200 nm)过滤介质的3-D结构,并在降低的工作压力下用纳米微粒气溶胶对其进行了挑战。对于本文考虑的纤维直径范围,自由分子流态是主要的。因此,可以忽略由纤维引起的对空气流场的干扰。计算了由于布朗扩散和拦截而产生的纳米纤维网的纳米颗粒捕获效率,其粒径范围为50至500 nm。我们的模拟表明,通过减小纤维直径,具有相同压降的过滤介质的最小收集效率会提高。该效果伴随着与这些最小效率相关的粒径的减小,即最穿透的粒径。此外,已经证明增加流动温度提高了纳米纤维过滤器的纳米颗粒捕获效率。允许颗粒彼此沉积在纤维上,这种纳米纤维过滤器的结块过程针对不同温度下的单分散和多分散气雾剂进行了模拟。介绍和讨论了有关在高温和低温下形成的纳米颗粒饼的组成的统计信息。

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