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Experimental investigation of jet-induced resuspension of indoor deposited particles

机译:射流引起的室内沉积颗粒重悬浮的实验研究

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Particles deposited on indoor surfaces may be resuspended and become airborne when disturbed by intensive jets. Depending on the intended purpose, the resuspension of deposited particles may be minimized or promoted. This investigation experimentally measured the resuspension of Arizona test dusts (ATDs) after a jet impingement. The simulating pulsed jets were created by a tube using compressed nitrogen gas. The jets were released into the test section in a wind tunnel that was cleaned by high-efficiency particulate air (HEPA) filters. The particle resuspension was evaluated by the dust-removal zone shapes on particle-laden plates, total dust-removal mass, and the number of airborne particles. The effects of the jet impingement heights, surface dust loads, and particle-laden plate surface roughness on particle resuspension were examined. This study revealed that sparsely deposited dusts indoors are more difficult to resuspend by jets than are densely deposited dusts. The jet impingement to a surface whose roughness is comparable to the particle diameters may cause severer airborne particle exposure than to surfaces with extremely small or large roughness values. For a high surface dust load, there is an optimal jet impingement height that can resuspend the maximum amount of the deposited dusts.
机译:沉积在室内表面的颗粒可能会被强烈的喷射干扰而重新悬浮并传播到空气中。取决于预期目的,可以最小化或促进沉积颗粒的重悬浮。这项研究实验性地测量了射流撞击后亚利桑那州测试粉尘(ATD)的重悬。模拟脉冲射流是通过使用压缩氮气的管子产生的。射流被释放到风洞中的测试区域中,该风洞通过高效微粒空气(HEPA)过滤器进行了清洁。通过载粉板上的除尘区形状,除尘总质量和空气中悬浮颗粒的数量来评估颗粒的悬浮性。检查了射流撞击高度,表面粉尘负荷和载满颗粒的板表面粗糙度对颗粒再悬浮的影响。这项研究表明,室内稀疏沉积的粉尘比密集沉积的粉尘更难通过喷气机重悬。与粗糙度极小或较大的表面相比,喷射冲击其粗糙度可与粒径比较的表面可能导致更严重的空气中颗粒暴露。对于较高的表面粉尘负荷,有一个最佳的喷射冲击高度,可以使最大的沉积粉尘重新悬浮。

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