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The Impact of Building Configuration and Wall Heating on Pollutant Dispersion in Urban Street Canyon

机译:建筑结构和墙体采暖对城市街道峡谷污染物扩散的影响

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This paper studies the impact of different building configuration and wall heating effect on flow field and pollutant dispersion in urban street canyon using the computational fluid dynamic (CFD) technique. Different street canyon configurations are considered according to the ratio of the building height and the street width H/W. It was found that (1) In symmetrical urban street canyon, heating up leeward building wall had little influence on the wind flow structure and pollutant dispersion. However, when the ground surface, windward building wall or all surfaces were heated respectively, the vortex structure in the canyon was significantly changed and directly influenced the pollutant dispersion in the canyon, (2) Due to upward buoyancy force from the wall heating changed the single vortex into multi-vortices, the pollutant no longer only accumulated on the one side but on both sides of the buildings together compared to isothermal condition in the street canyon.
机译:本文利用计算流体力学(CFD)技术研究了不同建筑物结构和墙体采暖效果对城市街道峡谷流场和污染物扩散的影响。根据建筑物高度与街道宽度H / W的比率,可以考虑不同的街道峡谷配​​置。研究发现:(1)在对称的城市街道峡谷中,加热背风建筑墙对风流结构和污染物扩散的影响很小。但是,当分别加热地面,迎风建筑物墙壁或所有表面时,峡谷中的涡旋结构发生了显着变化,并直接影响了峡谷中污染物的扩散。(2)由于墙壁加热产生的向上浮力改变了将单个涡旋转化为多个涡旋,与街道峡谷中的等温条件相比,污染物不再仅聚集在建筑物的一侧,而是聚集在建筑物的两侧。

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