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Airflows inside passenger cars and implications for airborne disease transmission

机译:乘用车内的气流和空气疾病传播的影响

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Transmission of highly infectious respiratory diseases, including SARS-CoV-2, is facilitated by the transport of exhaled droplets and aerosols that can remain suspended in air for extended periods of time. A passenger car cabin represents one such situation with an elevated risk of pathogen transmission. Here, we present results from numerical simulations to assess how the in-cabin microclimate of a car can potentially spread pathogenic species between occupants for a variety of open and closed window configurations. We estimate relative concentrations and residence times of a noninteracting, passive scalar—a proxy for infectious particles—being advected and diffused by turbulent airflows inside the cabin. An airflow pattern that travels across the cabin, farthest from the occupants, can potentially reduce the transmission risk. Our findings reveal the complex fluid dynamics during everyday commutes and nonintuitive ways in which open windows can either increase or suppress airborne transmission.
机译:通过呼出的液滴和气溶胶的运输,促进了高度传染性呼吸系统疾病,包括SARS-COV-2,可以在延长的时间内悬浮在空气中。乘客车厢代表一种具有升高的病原体传输风险的这种情况。在这里,我们提自数值模拟的结果,以评估汽车的内部机舱微气密如何在乘员之间潜在地分布致病物种的各种开放和封闭的窗口配置。我们估计非交互式,被动标量的相对浓度和停留时间 - 一种用于传染粒子的代理 - 被驾驶室内的湍流气流的建立和扩散。在距离乘客的舱室里旅行的气流模式可能会降低传输风险。我们的研究结果揭示了在日常通道和非完整方式中的复杂流体动力学,其中开窗可以增加或抑制空气传输。

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