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

机译:地热条件下城市街道峡谷流动与污染物迁移的大涡模拟

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Our study employed large-eddy simulation (LES) based on a one-equation subgrid-scale model to investigate the flow field and pollutant dispersion characteristics inside urban street canyons. Unstable thermal stratification was produced by heating theground of the street canyon. Using the Boussinesq approximation, thermal buoyancy forces were taken into account in both the Navier-Stokes equations and the transport equation for subgrid-scale turbulent kinetic energy (TKE). The LESs were validated against experimental data obtained in wind-tunnel studies before the model was applied to study the detailed turbulence, temperature, and pollutant dispersion characteristics in the street canyon of aspect ratio 1. The effects of different Richardson numbers(Ri) were investigated. The ground heating significantly enhanced mean flow, turbulence, and pollutant flux inside the street canyon, but weakened the shear at the roof level. The mean flow was observed to be no longer isolated from the free stream andfresh air could be entrained into the street canyon at the roof-level leeward corner. Weighed against higher temperature, the ground heating facilitated pollutant removal from the street canyon.
机译:我们的研究采用基于一方程子网格规模模型的大涡模拟(LES)来研究城市街道峡谷内的流场和污染物扩散特征。通过加热街道峡谷的地面产生不稳定的热分层。使用Boussinesq逼近,在纳维尔尺度斯托克斯方程和子网格尺度湍动能(TKE)的输运方程中都考虑了热浮力。在应用模型研究纵横比为1的街道峡谷的详细湍流,温度和污染物扩散特征之前,先根据风洞研究中获得的实验数据对LES进行了验证。研究了不同Richardson数(Ri)的影响。地面加热显着增强了街道峡谷内的平均流量,湍流和污染物通量,但削弱了屋顶水平的剪切力。观察到平均流量不再与自由流隔离,新鲜空气可以被带入屋顶水平下风角的街道峡谷中。考虑到较高的温度,地暖有助于从街道峡谷中清除污染物。

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