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Particle deposition in random fibrous porous materials: effect of acoustic fields, fibres distribution and porosity

机译:随机纤维多孔材料中的颗粒沉积:声场,纤维分布和孔隙率的影响

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摘要

Porous filters are widely used to control air pollution and have different industrial applications since they constitute a reliable and low cost solution to separate particulate matter from an air stream. In this study, the particle deposition within 3D porous filters subjected to low-frequency acoustic fields is studied following a numerical approach. Findings demonstrate that the application of acoustic waves enhances the deposition of particles, which in turn improves filter performance. It is shown that frequencies ranging from 200 to 1000 Hz (intensity 120 dB) increase particle deposition up to 2.5 times. Besides, the manner in which fibres are distributed in the porous material and the filter porosity affect considerably the number of particles deposited, for filters subjected to the same filtration velocity.
机译:多孔过滤器被广泛用于控制空气污染,并具有不同的工业应用,因为它们构成了一种可靠的低成本解决方案,可以将颗粒物与气流分离。在这项研究中,采用数值方法研究了在3D多孔滤波器中受到低频声场影响的颗粒沉积情况。研究结果表明,声波的应用增强了颗粒的沉积,从而提高了过滤器的性能。结果表明,频率范围从200到1000 Hz(强度120 dB),使颗粒沉积增加了2.5倍。此外,对于处于相同过滤速度的过滤器,纤维在多孔材料中的分布方式和过滤器的孔隙率会大大影响沉积的颗粒数量。

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