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Efficiency of inertial deposition of aerosol particles in fibrous filters with regard to particle rebounds from fibers

机译:关于纤维中的颗粒回弹,气溶胶颗粒在纤维过滤器中的惯性沉积效率

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摘要

The inertial deposition of submicron aerosol nanoparticles onto fibers during gas filtration through fine-fiber filters is considered. It is shown that there is critical filtration velocity U below which the energy loss upon collisions has no influence on the filtration efficiency. Above this critical velocity, the filtration efficiency depends on the mechanism of the inelastic energy loss and can be noticeably lower than the result of its estimation with no allowance for the particle rebound. For a rather dense fibrous medium, when not all particles that have rebounded from a fiber have time to attain the flow velocity before the next collision with another fiber, the filtration efficiency depends on the velocity distribution of the rebounding particles. It is shown that, in this case, the filtration efficiency must increase with the packing density of a filter.
机译:考虑了在通过细纤维过滤器进行气体过滤期间,亚微米气溶胶纳米颗粒在纤维上的惯性沉积。结果表明,存在临界过滤速度U,低于该临界速度时,碰撞时的能量损失不会影响过滤效率。高于此临界速度,过滤效率取决于非弹性能量损失的机制,并且可能明显低于其估计结果,并且没有考虑颗粒反弹。对于相当致密的纤维介质,当并非所有从纤维反弹的颗粒都具有时间在与另一根纤维的下一次碰撞之前达到流速时,过滤效率取决于反弹颗粒的速度分布。结果表明,在这种情况下,过滤效率必须随着过滤器的堆积密度而增加。

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