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A numerical study of the effects of ambient wind direction on flow and dispersion in urban street canyons using the RNG k-ε turbulence model

机译:利用RNGk-ε湍流模型对环境风向对城市街道峡谷流动和扩散影响的数值研究

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A three-dimensional computational fluid dynamics model with the renormalization group k-ε turbulence scheme is developed. The model developed is used to investigate the effects of ambient wind direction on flow and dispersion around a group of buildings. According to the ambient wind direction, three flow patterns are identified in a view of the characteristics of the mean flow circulation generated in street canyons. In the first flow pattern, a portal vortex generated behind the east wall of the upwind building is symmetric about the center of the street canyon. In the second flow pattern, a portal vortex is also generated behind the east wall of the upwind building, but its horizontal axis is not perpendicular to the ambient wind direction. In the third flow pattern, the footprints of a portal vortex are located behind both the east and north walls of the upwind building. When the incident wind angle is 45°, flow is diagonally symmetric behind the upwind building. As the incident wind angle increases, pollutant escape from the street canyons decreases. Except for the case where the ambient wind direction is perpendicular to the buildings, pollutants are trapped in the portal vortex, thus exhibiting high concentration there.
机译:建立了具有归一化群k-ε湍流方案的三维计算流体动力学模型。开发的模型用于研究环境风向对一组建筑物周围流动和扩散的影响。根据环境风向,根据街道峡谷中产生的平均流环流的特征,确定了三种流型。在第一种流动模式中,在上风建筑的东墙后面产生的门口涡流关于街道峡谷的中心对称。在第二种流动模式中,在上风建筑物的东墙后面也产生了门口涡流,但其水平轴不垂直于环境风向。在第三种流动模式中,入口涡旋的足迹位于上风建筑物的东壁和北壁的后面。当入射风角度为45°时,在上风建筑物后面的流动是对角对称的。随着入射风角的增加,污染物从街道峡谷中的逸出减少。除了周围的风向垂直于建筑物的情况外,污染物都被捕集在门口涡流中,因此在那里表现出高浓度。

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