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Large-Eddy Simulation of Flow and Pollutant Dispersion in High-Aspect-Ratio Urban Street Canyons with Wall Model

机译:高墙比城市街道峡谷流动与污染物扩散的大涡模拟及墙体模型

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摘要

A large-eddy simulation (LES) with a one-equation subgrid-scale (SGS) model was developed to investigate the flow field and pollutant dispersion inside street canyons of high aspect ratio (AR). A 1/7th power-law wall model was implemented near rigid walls to mitigate the demanding near-wall resolution requirements in LES. This LES model had been extensively validated against experimental results for street canyons of AR = 1 and 2 before it was applied to the cases of AR = 3 and 5. A ground-level passive pollutant line source, located in the middle of the street, was used to simulate vehicular emissions. Three and five vertically aligned primary recirculations were developed in the street canyons of AR 3 and 5, respectively. The ground-level mean wind speed was less than 0.5% of the free stream value, which makes it difficult for the pollutant to be transported upward for removal. High pollutant concentration and variance were found near the buildings where the air flow is upwards. It was found that the velocity fluctuation, pollutant concentration and variance were all closely related to the interactions between the primary recirculations and/or the free surface layer. Several quantities, which are non-linear functions of AR, were introduced to quantify the air quality in street canyons of different configurations.
机译:为了研究高纵横比(AR)街道峡谷内部的流场和污染物扩散,开发了一种具有单方程子网格规模(SGS)模型的大涡模拟(LES)。在刚性墙附近实施了1/7幂律墙模型,以减轻LES中苛刻的近墙分辨率要求。将该模型应用于AR = 3和5的情况之前,已经针对AR = 1和2的街道峡谷进行了广泛的实验验证。位于街道中间的地面被动污染物线源,用于模拟车辆排放。在AR 3和5的街道峡谷中分别形成了三个和五个垂直排列的一次再循环。地面平均风速小于自由流值的0.5%,这使得污染物难以向上运输以清除。在气流向上的建筑物附近发现高浓度的污染物和污染物。发现速度波动,污染物浓度和变化都与一次再循环和/或自由表面层之间的相互作用密切相关。引入了AR的非线性函数几个数量,以量化不同配置的街道峡谷中的空气质量。

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