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Large-eddy simulations of wind flow and pollutant dispersion in a street canyon

机译:街道峡谷中风和污染物扩散的大涡模拟

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摘要

The wind flow and pollutant dispersion phenomena in urban streets of different aspect ratios (h/w) and relative canyon height ratios (h_2/h_1) are studied using large-eddy simulations (LES). The concerned large eddies are computed by the filtered Navier-Stokes equations in LES and the unresolved small eddies are modelled using Smagorinsky subgrid scale model. The domain is discretised into uneven staggered grids using marker and cell (MAC) method. The objective of this work is to demonstrate the various flow regimes and their threshold values in urban street canyon using LES for various canyon geometries and Reynolds numbers. All cases are investigated with Reynolds number 400 primarily to obtain information of the three regimes of canyon flow and the Reynolds number is then increased incrementally to 2000 to study the consequent flow fields and pollutant dilution patterns. In low Reynolds numbers, results presented agree with the generally obtained threshold values for different flow regimes. Increase in Reynolds number has smeared the flow regimes boundary. The ease of pollutant dispersion is mainly promoted by better mixings inside the canyon, formation of unstable circulations and higher Reynolds numbers. All results show that the flow regime and pollution pattern demarcations depend on both the varying canyon geometry and Reynolds number.
机译:使用大涡模拟(LES)研究了不同纵横比(h / w)和相对峡谷高度比(h_2 / h_1)的城市街道中的风流和污染物扩散现象。 LES中的滤波后的Navier-Stokes方程计算了相关的大涡流,并使用Smagorinsky子网格比例模型对未解析的小涡流进行了建模。使用标记和单元(MAC)方法将域离散为不均匀的交错网格。这项工作的目的是通过使用LES来说明各种几何形状和雷诺数,以证明城市街道峡谷中的各种流态及其阈值。使用雷诺数400对所有案例进行调查主要是为了获得有关峡谷流动的三种状态的信息,然后将雷诺数递增至2000,以研究随后的流场和污染物稀释模式。在低雷诺数下,给出的结果与不同流态下通常获得的阈值一致。雷诺数增加掩盖了流态边界。峡谷内更好的混合,不稳定的环流形成和更高的雷诺数,促进了污染物扩散的容易性。所有结果表明,流态和污染模式划分都取决于变化的峡谷几何形状和雷诺数。

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