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首页> 外文期刊>Atmosphere >Qualitative and Quantitative Investigation of Multiple Large Eddy Simulation Aspects for Pollutant Dispersion in Street Canyons Using OpenFOAM
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Qualitative and Quantitative Investigation of Multiple Large Eddy Simulation Aspects for Pollutant Dispersion in Street Canyons Using OpenFOAM

机译:使用OpenFOAM对街道峡谷中污染物扩散的多个大型涡模拟方面进行定性和定量研究

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Air pollution is probably the single largest environment risk to health and urban streets are the localized, relevant hotspots. Numerous studies reviewed the state-of-the-art models, proposed best-practice guidelines and explored, using various software, how different approaches (e.g., Reynolds-averaged Navier–Stokes (RANS), large eddy simulations (LES)) inter-compare. Open source tools are continuously attracting interest but lack of similar, extensive and comprehensive investigations. At the same time, their configuration varies significantly among the related studies leading to non-reproducible results. Therefore, the typical quasi-2D street canyon geometry was selected to employ the well-known open-source software OpenFOAM and to investigate and validate the main parameters affecting LES transient simulation of a pollutant dispersion. In brief, domain height slightly affected street level concentration but source height had a major impact. All sub-grid scale models predicted the velocity profiles adequately, but the k-equation SGS model best-resolved pollutant dispersion. Finally, an easily reproducible LES configuration is proposed that provided a satisfactory compromise between computational demands and accuracy.
机译:空气污染可能是对健康造成的最大的环境风险,而城市街道则是本地化的相关热点。众多研究回顾了最新模型,提出了最佳实践指南,并使用各种软件探讨了不同方法之间的不同方法(例如,雷诺平均Navier-Stokes(RANS),大涡模拟(LES))相比。开源工具一直在引起人们的兴趣,但是缺乏类似,广泛和全面的研究。同时,在相关研究中,它们的构型差异很大,从而导致不可再现的结果。因此,选择典型的准2D街道峡谷几何形状,以使用著名的开源软件OpenFOAM并调查和验证影响污染物扩散的LES瞬态模拟的主要参数。简而言之,区域高度对街道水平的集中程度略有影响,但源高度却有很大的影响。所有子网格规模模型均能充分预测速度分布,但k方程SGS模型可最佳解析污染物扩散。最后,提出了一种易于复制的LES配置,该配置在计算需求和准确性之间提供了令人满意的折衷方案。

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