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首页> 外文期刊>Aerosol and Air Quality Research >Characterizing the Dynamic Interactions and Exposure Implications of a Particle-Laden Cough Jet with Different Room Airflow Regimes Produced by Low and High Momentum Jets
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Characterizing the Dynamic Interactions and Exposure Implications of a Particle-Laden Cough Jet with Different Room Airflow Regimes Produced by Low and High Momentum Jets

机译:表征由低动量喷射器和高动量喷射器产生的具有不同房间气流状态的载有颗粒的咳嗽喷射器的动态相互作用和暴露意义

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The objective of this study is to examine the dynamic interaction of a cough jet with different indoor airflow distributions created by linear slot diffusers considering the inter-personal transport of coughed particles. The experimental measurements were performed in a chamber, where the interaction of a cough jet and downward jets with various momentums was visualized by smoke. In this study, parameters related to the dynamic interaction of a transient cough jet and a steady downward jet have been studied: (1) distance between the cough jet source and an exposed dummy (ED); (2) the initial momentum of the downward plane jet. The experimental results indicate that the ceiling-attached horizontal jets that are widely applied in the over-head mixing ventilation systems have difficulties in deflecting the cough jet, and thereby have difficulties in reducing inter-personal transport of the coughed particles. This study found that a downward plane jet could prevent the transport of cough particles from the cough dummy to the ED. When the ED is standing 0.5 meter away from the cough dummy, the personal exposure (PE) level to coughed particles by using a downward plane jet could be two orders of magnitude lower than by using ceiling-attached horizontal jets. In addition, this study quantifies the interaction of a cough jet and a downward plane jet in their ability to reduce exposure to coughed particles. The results may be used in the process of diffuser selection and suggests that ventilation systems employing downward plane jets with high discharge velocities might be useful in public spaces to reduce inter-personal exposure to coughed particles
机译:这项研究的目的是研究咳嗽喷射器与线性狭缝扩散器产生的不同室内气流分布之间的动态相互作用,并考虑到咳嗽颗粒的人际交往。实验测量是在一个室内进行的,通过烟雾可以看到咳嗽射流和向下射流与各种动量的相互作用。在这项研究中,研究了与短暂咳嗽射流和向下稳定射流的动力相互作用有关的参数:(1)咳嗽射流源与裸露假人(ED)之间的距离; (2)向下平面射流的初始动量。实验结果表明,在顶置式混合通风系统中广泛使用的附有天花板的水平射流很难使咳嗽流偏转,从而难以减少咳嗽颗粒的人际运输。这项研究发现,向下的平面射流可以防止咳嗽颗粒从咳嗽假人转移到急诊室。当ED站在距离咳嗽假人0.5米的地方时,使用向下的平面射流比使用附有天花板的水平射流,个人对咳嗽颗粒的暴露(PE)水平可能低两个数量级。此外,这项研究量化了咳嗽射流和向下平面射流在减少接触咳嗽颗粒方面的相互作用。该结果可用于扩散器的选择过程,并表明采用具有高排放速度的向下平面射流的通风系统在公共场所可能会有用,以减少人与人之间咳嗽颗粒的暴露

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