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街道树木对城市街区尺度空气质量的影响。第一部分:用于 RANS CFD 模拟的质量保证研究和湍流施密特数分析。

Influence of avenue-trees on air quality at the urban neighborhood scale. Part I: quality assurance studies and turbulent Schmidt number analysis for RANS CFD simulations.

机构信息

Building Physics and Services, Department of the Built Environment, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

Environ Pollut. 2015 Jan;196:214-23. doi: 10.1016/j.envpol.2014.10.016.

Abstract

Flow and dispersion of traffic pollutants in a generic urban neighborhood with avenue-trees were investigated with Computational Fluid Dynamics (CFD). In Part I of this two-part contribution, quality assessment and assurance for CFD simulations in urban and vegetation configurations were addressed,before in Part II flow and dispersion in a generic urban neighborhood with multiple layouts of avenue trees were studied. In a first step, a grid sensitivity study was performed that inferred that a cell count of 20 per building height and 12 per canyon width is sufficient for reasonable grid insensitive solutions. Next, the performance of the realizable k-ε turbulence model in simulating urban flows and of the applied vegetation model in simulating flow and turbulence in trees was validated. Finally, based on simulations of street canyons with and without avenue-trees, an appropriate turbulent Schmidt number or modeling dispersion in the urban neighborhood was determined as Sc(t) =0.5.

摘要

采用计算流体动力学(CFD)研究了具有林荫道树木的一般城市街区中交通污染物的流动和扩散。在本两部分研究的第一部分中,解决了城市和植被配置中 CFD 模拟的质量评估和保证问题,然后在第二部分中研究了具有多种林荫道树木布局的一般城市街区中的流动和扩散。在第一步中,进行了网格敏感性研究,推断出对于合理的网格不敏感解,每栋建筑物高度 20 个单元和每峡谷宽度 12 个单元的网格数量就足够了。接下来,验证了可实现 k-ε 湍流模型在模拟城市流动方面的性能,以及应用于模拟树木中流动和湍流的植被模型的性能。最后,基于带有和不带有林荫道的街道峡谷的模拟,确定了适当的城市街区湍流施密特数或用于模拟扩散的施密特数 Sc(t) =0.5。

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