论文标题

在单层和多层面罩中的次要雾化和替代咳嗽液滴的阻塞

On Secondary Atomization and blockage of surrogate cough droplets in single and multi-layer face masks

论文作者

Sharma, Shubham, Pinto, Roven, Saha, Abhishek, Chaudhuri, Swetaprovo, Basu, Saptarshi

论文摘要

到目前为止,通过呼气和吸入呼吸道液滴的使用,Facemasks的使用提供了免受病毒载荷传播的保护。因此,卫生官员强烈建议在当前的Covid-19大流行期间使用面罩的使用。尽管通常建议使用三层口罩进行使用,但许多常用或自制面具仅包含单层和双层。在这项研究中,我们通过详细的基于物理的分析和高速成像显示,高动量止咳液滴对单层和双层面膜的撞击可能会导致明显的部分渗透率,更重要的是,更重要的是雾化了许多较小的女子液滴,从而增加了气溶胶的总人群,这可能会持续更长的时间。由于撞击,流体动力的聚焦和挤出通过显微镜孔中的纤维网络中,高动量止咳液滴的可能性尚未探索。但是,这种独特的气溶胶生成模式构成了有限的感染风险,如本工作所示。我们还证明,在接近给定液滴体积的70%的单层掩模中被雾化,只有30%被困在纤维中。对于双层蒙版,夹杂的体积接近90%,这仍然使一些雾化成较小的液滴。但是,我们发现三层手术面膜允许可以忽略不计的渗透,因此应有效防止疾病传播。

By now it is well-understood that the usage of facemasks provides protection from transmission of viral loads through exhalation and inhalation of respiratory droplets. Therefore, during the current Covid-19 pandemic the usage of face masks is strongly recommended by health officials. Although three-layer masks are generally advised for usage, many commonly available or homemade masks contain only single and double layers. In this study, we show through detailed physics based analyses and high speed imaging that high momentum cough droplets on impingement on single- and double-layer masks can lead to significant partial penetration and more importantly atomization into numerous much smaller daughter droplets, thereby increasing the total population of the aerosol, which can remain suspended for a longer time. The possibility of secondary atomization of high momentum cough droplets due to impingement, hydrodynamic focusing and extrusion through the microscale pores in the fibrous network of the mask has not been explored before. However, this unique mode of aerosol generation poses a finite risk of infection as shown in this work. We also demonstrate that in single layer masks close to 70 % of a given droplet volume is atomized and only 30 % is trapped within the fibers. The entrapped volume is close to 90 % for double layer masks which still allows some atomization into smaller droplets. We however found that a triple-layer surgical mask permits negligible penetration and hence should be effective in preventing disease transmission.

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