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Characteristics of air pollutant dispersion around a high-rise building

机译:高层建筑周围空气污染物的扩散特征

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摘要

A numerical wind tunnel model was proposed. The computed results of the pollutant diffusion around a typical Hong Kong high-rise building model (at a linear scale of 1:30), were found to show a similar trend to the outcomes of self-conducted experimental measurements that the pathways of pollutant migration for windward and leeward pollutant emission are different. For the case with windward pollutant emission at the 3rd floor within a re-entry, the pollutant migrated downwards due to the downwash created by the wind. In contrast, for the case with leeward pollution emission, dispersion is dominated by intense turbulent mixing in the near wake and characterized by the upward migration of the pollutant in the leeward re-entry. The simulated results of haze-fog (HF) studies confirm that the pathway of pollutant migration is dominated by wind-structure interaction and buoyancy effect only plays a minor role in the dispersion process.
机译:提出了数值风洞模型。发现污染物在典型的香港高层建筑模型周围(线性比例为1:30)扩散的计算结果显示出与自导实验测量结果相似的趋势,即污染物迁移的路径对于上风和下风的污染物排放是不同的。对于在重新进入的情况下在三楼排放迎风污染物的情况,由于风产生的向下冲洗,污染物向下迁移。相比之下,对于有背风污染排放的情况,扩散主要是在近尾流中剧烈的湍流混合,其特征是污染物在背风折返中向上迁移。雾霾(HF)研究的模拟结果证实,污染物迁移的路径主要受风-结构相互作用的影响,浮力作用在分散过程中仅起很小的作用。

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