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Aerodynamic Dispersion of Respiratory Droplets and Aerosols by Turbulent Airflow

机译:湍流气流呼吸液滴和气溶胶的空气动力学分散

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The precautionary measures recommended during the current COVID-19 pandemic do not consider the effect of turbulent airflow. We found the propagation of droplets and aerosols highly affected by this condition. The spread of respiratory droplets by the action of sneezing is characterized by the dynamics of two groups of droplets of different sizes: Larger droplets (300–900 μm) have a ballistic trajectory and can be spread up to 5 m, while a cloud of smaller droplets (100–200 μm) can be transported and dispersed at longer distances up to 18 m by the action of the turbulent airflow. In relation to the spread of exhaled aerosols during respiration, these remain in the air for long periods of time. In the presence of intense or moderate airflow, this set of particles follow airflow streamlines, and thus their propagation is directly determined by the air velocity field. Given the scientific evidence, these results should be considered in public debate about the aerodynamic dispersion characteristics of scenarios where social interactions occur and about the measures to mitigate the spread of the virus.
机译:当前Covid-19大流行期间推荐的预防措施不考虑湍流气流的影响。我们发现液滴和气溶胶的繁殖受到这种情况的高度影响。通过打喷嚏作用的呼吸液滴的传播的特征在于两组不同尺寸的液滴的动态:较大的液滴(300-900μm)具有弹道轨迹,并且可以散布到5米,而较小的云液滴(100-200μm)可以通过湍流气流的作用以长达18米的距离以长达18米的距离运输和分散。关于呼吸期间呼出气雾剂的涂抹,这些留在空气中长时间。在强烈或中等气流的情况下,这组粒子遵循气流流线,因此它们的传播由空气速度场直接确定。鉴于科学证据,这些结果应在公开辩论中考虑关于社会互动发生的情况的空气动力学分散特征以及减轻病毒传播的措施。

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