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Numerical Simulation of Coughed Droplets in Conference Room

机译:会议室咳嗽液滴的数值模拟

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The viruses spread in the air-conditioning room with the droplets produced by talking, coughing, sneezing and other respiratory behavior, which pollute the indoor air and threaten to human health. This paper studies the influence of lateral-supply top-return, upper-supply top-return and bottom-supply upper-return in the transport of coughed droplets by using a Lagrangian model in a conference room, besides no ventilation is considered for comparison. The non-steady-state is used and gravity, drag force and Brownian force of coughed droplets are accounted. The simulation results indicate that the exposed sitting at the middle of conference table are more susceptible to infection for lateral-supply top-retum and upper-supply top-return. The exposed sitting near the polluter are more susceptible to infection in bottom-supply upper-return. Bottom-supply upper-return air-flow organization, such as Displacement Ventilation and Underfloor Air Distribution, can control the spread of respiratory diseases effectively and provide people with a healthy and comfortable indoor environment.
机译:病毒在空调室配有通过谈话,咳嗽,打喷嚏和其他呼吸行为产生的液滴,这些呼吸行为污染室内空气并威胁到人类健康。本文通过在会议室中使用Lagrangian模型,横向供给顶返顶返回物的影响,上部供应顶返返回,上部供应顶部返回和底部供应上返回的上返回,除了没有通风进行比较。使用非稳态,占咳嗽液滴的重力,拖曳力和褐色力。仿真结果表明,在会议桌子间暴露的坐着坐在会议表中更容易感染横向供应顶部回压和上部供应顶部返回。在污染物附近的暴露坐在污染物附近更容易感染底部供应上返回。底部供应的上返回气流组织,如排量通风和地板空气分布,可有效控制呼吸系统疾病的传播,为人们提供健康舒适的室内环境。

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