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Flow and Pollutant Transport in Urban Street Canyons of Different Aspect Ratios with Ground Heating: Large-Eddy Simulation

机译:城市街道峡谷流量与污染物运移的不同方面比率与地面加热:大涡模拟

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摘要

A validated large-eddy simulation model was employed to study the effect of the aspect ratio and ground heating on the flow and pollutant dispersion in urban street canyons. Three ground-heating intensities (neutral, weak and strong) were imposed in street canyons of aspect ratio 1, 2, and 0.5. The detailed patterns of flow, turbulence, temperature and pollutant transport were analyzed and compared. Significant changes of flow and scalar patterns were caused by ground heating in the street canyon of aspect ratio 2 and 0.5, while only the street canyon of aspect ratio 0.5 showed a change in flow regime (from wake interference flow to skimming flow). The street canyon of aspect ratio 1 does not show any significant change in the flow field. Ground heating generated strong mixing of heat and pollutant; the normalized temperature inside street canyons was approximately spatially uniform and somewhat insensitive to the aspect ratio and heating intensity. This study helps elucidate the combined effects of urban geometry and thermal stratification on the urban canyon flow and pollutant dispersion.
机译:利用一个经过验证的大涡模拟模型来研究纵横比和地热对城市街道峡谷的流量和污染物扩散的影响。在纵横比为1、2和0.5的街道峡谷中施加了三种地热强度(中性,弱和强)。分析并比较了流量,湍流,温度和污染物迁移的详细模式。流量和标量模式的显着变化是由纵横比为2和0.5的街道峡谷中的地面加热引起的,而只有纵横比为0.5的街道峡谷显示了流态的变化(从尾流干扰流到撇渣流)。长宽比为1的街道峡谷在流场中没有显示任何显着变化。地热产生热量和污染物的强烈混合;街道峡谷内的标准化温度在空间上近似均匀,并且对纵横比和加热强度不敏感。这项研究有助于阐明城市几何形状和热分层对城市峡谷流动和污染物扩散的综合影响。

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