论文标题

湍流泡芙中呼吸液滴的寿命及其对空中疾病传播的影响

Extended lifetime of respiratory droplets in a turbulent vapour puff and its implications on airborne disease transmission

论文作者

Chong, Kai Leong, Ng, Chong Shen, Hori, Naoki, Yang, Rui, Verzicco, Roberto, Lohse, Detlef

论文摘要

为了量化不同环境相对湿度下呼吸液滴的命运,进行了典型呼吸事件的直接数值模拟。我们发现,由于被驱逐的潮湿泡芙中的湍流涡流扫除了小滴(最初直径为10UM),因此与威廉·F·韦尔斯(William F. Wells)所建议的相比,它们的寿命延长了30倍以上的倍数。随着环境相对湿度的增加,小液滴的寿命延长进一步增加,相对湿度为90%,高达150倍,这意味着一秒钟内呼吸液滴的对流范围超过两米。使用拉格朗日统计,我们证明了湍流的潮湿呼吸道泡芙吞噬了小滴,从而导致其一生增加了数量级,这意味着在呼吸事件中,它们可以比大型呼吸事件更进一步。我们的发现为大型参数研究提供了起点,并且可能具有建立优化通风和室内湿度控制的策略的启发性。这种策略是减轻当今秋季和即将到来的冬季大流行的关键。

To quantify the fate of respiratory droplets under different ambient relative humidities, direct numerical simulations of a typical respiratory event are performed. We found that, because small droplets (with initial diameter of 10um) are swept by turbulent eddies in the expelled humid puff, their lifetime gets extended by a factor of more than 30 times as compared to what is suggested by the classical picture by William F. Wells, for 50% relative humidity. With increasing ambient relative humidity the extension of the lifetimes of the small droplets further increases and goes up to around 150 times for 90% relative humidity, implying more than two meters advection range of the respiratory droplets within one second. Employing Lagrangian statistics, we demonstrate that the turbulent humid respiratory puff engulfs the small droplets, leading to many orders of magnitude increase in their lifetimes, implying that they can be transported much further during the respiratory events than the large ones. Our findings provide the starting points for larger parameter studies and may be instructive for developing strategies on optimizing ventilation and indoor humidity control. Such strategies are key in mitigating the COVID-19 pandemic in the present autumn and upcoming winter.

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