首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >A study on air pollutant dispersion with bimolecular reactions in urban street canyons using large-eddy simulations
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A study on air pollutant dispersion with bimolecular reactions in urban street canyons using large-eddy simulations

机译:利用大涡模拟研究城市街道峡谷中具有双分子反应的空气污染物扩散

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Large-eddy simulations (LESs) were performed on the reactive air pollutant dispersion in three types of urban street canyons that had various roof-height levels. Line sources that emit nitrogen monoxide (NO) were set on the bottom of the canyon space in each case. NO dispersed on the cavity eddy and reacted with ozone included in the free stream. The reactivity of air pollutants and the roof heights had a considerable influence on the concentrations of the pollutants inside street canyons. Deeper canyon spaces weakened the ventilation efficiency for pollutants generated inside the canyon. In contrast, variations in the roof height improved the ventilation efficiency. However, in terms of pollutants that came from outside the canyon, the concentration was the lowest for the case with the highest aspect ratio because of the effluent reactions that occurred during retention inside the canyon space. The correlation of the reactors' concentrations was also inspected to reveal the influence of the turbulent nature of the atmosphere on the reaction rate. The correlation had a magnitude of more than 5% to 10% of the total reaction rate inside the street canyons, and it could reach 40% at the maximum in the case with an aspect ratio of 2.0.
机译:在具有不同屋顶高度水平的三种类型的城市街道峡谷中,对反应性空气污染物扩散进行了大涡模拟(LESs)。在每种情况下,都会在峡谷空间的底部设置发出一氧化氮(NO)的线源。 NO分散在空腔涡流中,并与自由流中包含的臭氧发生反应。空气污染物的反应性和屋顶高度对街道峡谷内污染物的浓度影响很大。较深的峡谷空间削弱了峡谷内部产生的污染物的通风效率。相反,屋顶高度的变化提高了通风效率。但是,就来自峡谷外的污染物而言,浓度最高的情况下浓度是最低的,这是因为在保留在峡谷空间内时会发生污水反应。还检查了反应器浓度的相关性,以揭示大气湍流性质对反应速率的影响。相关性的数量级超过街道峡谷内总反应速率的5%至10%,在纵横比为2.0的情况下,最大可能达到40%。

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