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The airborne transmission of infection between flats in high-rise residential buildings: Particle simulation

机译:高层住宅建筑中单位之间感染的空气传播传播:粒子模拟

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摘要

Several case clusters occurred in high-rise residential buildings in Hong Kong in the 2003 SARS (the severe acute respiratory syndrome) epidemic, which motivated a series of engineering investigations into the possible airborne transport routes. It is suspected that, driven by buoyancy force, the polluted air that exits the window of the lower floor may re-enter the immediate upper floor through the window on the same side. This cascade effect has been quantified and reported in a previous paper, and it is found that, by tracer gas concentration analysis, the room in the adjacent upstairs may contain up to 7% of the air directly from the downstairs room. In this study, after validation against the experimental data from literatures, Eulerian and Lagrangian approaches are both adopted to numerically investigate the dispersion of expiratory aerosols between two vertically adjacent flats. It is found that the particle concentration in the upper floor is two to three orders of magnitude lower than in the source floor. 1.0 μm particles disperse like gaseous pollutants. For coarse particles larger than 20.0 μm, strong deposition on solid surfaces and gravitational settling effect greatly limit their upward transport.
机译:2003年SARS(严重急性呼吸系统综合症)疫情在香港的高层住宅楼中发生了几起案例,促使人们对可能的空中运输路线进行了一系列工程研究。怀疑在浮力的驱动下,离开下层窗户的污染空气可能会从同一侧的窗户重新进入上一层。这种级联效应已经在先前的论文中进行了量化和报告,并且发现,通过示踪气体浓度分析,相邻楼上的房间可能直接包含来自楼下房间的多达7%的空气。在这项研究中,在根据文献中的实验数据进行验证之后,采用欧拉和拉格朗日方法对两个垂直相邻单位之间呼气气溶胶的扩散进行了数值研究。发现上层中的粒子浓度比源层中的粒子浓度低两到三个数量级。 1.0μm的颗粒像气态污染物一样分散。对于大于20.0μm的粗颗粒,固体表面上的强沉积和重力沉降作用极大地限制了其向上传输。

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