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Assessment of Pollutant Dispersion in the Re-entrance Space of a High-rise Residential Building, Using Wind Tunnel Simulations

机译:利用风洞模拟评估高层住宅建筑物再入空间中的污染物扩散

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This paper investigates the likely route of dispersion of airborne pollutants and pathogenic agents in the re-entrance space of a high-rise residential (HRR) building in Hong Kong. A 1:150 scaled HRR building, a 30 storeys tall model was tested in a wind tunnel with simulated atmospheric boundary layer flow. Tracer gas, propane released from the lower, middle and upper parts of the building, was measured by flame ionisation detection and this was used to simulate the air pollutant dispersion within the re-entrance space. There were a total of 495 measurements, tested under five different wind directions at 99 measurement points on windows locations of every floor of the modelled building. The tracer gas concentration profiles obtained would illustrate the pollutant dispersion and transmission routes under the different wind effect. The results showed that the airborne pollutants or pathogenic agents could be dispersed mainly along the vertical routes, posing a potential risk to the adjacent neighbours immediately above the source location. Wind direction could also affect the dispersion. The findings of this study should inform the development of ventilation strategies for HRR buildings and would guide building design to minimise transmission of airborne diseases or harmful pollutants within buildings.
机译:本文研究了在香港一幢高层住宅(HRR)建筑物的再入空间中空气传播的污染物和病原体扩散的可能途径。在具有模拟大气边界层流的风洞中测试了1:150比例的HRR建筑物,高30层的模型。示踪气体,即从建筑物的下部,中部和上部释放的丙烷,通过火焰电离检测进行了测量,并用于模拟空气污染物在折返空间内的扩散。共有495个测量值,在五个不同的风向下,在模型建筑物每个楼层的窗户位置的99个测量点处进行了测试。所获得的示踪气体浓度曲线将说明在不同风效应下污染物的扩散和传播途径。结果表明,空气传播的污染物或病原体可能主要沿垂直路线散布,对直接位于源头位置上方的相邻邻国构成潜在风险。风向也会影响散布。这项研究的结果应有助于HRR建筑物的通风策略的发展,并将指导建筑物设计以最大程度地减少建筑物内的空气传播疾病或有害污染物的传播。

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