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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Numerical evaluation of pollutant dispersion in the built environment: Comparisons between models and experiments
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Numerical evaluation of pollutant dispersion in the built environment: Comparisons between models and experiments

机译:建筑环境中污染物扩散的数值评估:模型与实验的比较

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摘要

Steady-state RANS Computational Fluid Dynamics (CFD) simulations of pollutant dispersion in the neutrally stable atmospheric boundary layer are made with the commercial code Fluent 6.1 for three case studies: plume dispersion from an isolated stack, low-momentum exhaust from a rooftop vent on an isolated cubic building model and high-momentum exhaust from a rooftop stack oil a low-rise rectangular building with several rooftop structures. The results are compared with the Gaussian model, the semi-empirical ASHRAE model and wind tunnel and full-scale measurements. It is shown that in all three cases and with all turbulence models tested, the lateral plume spread is significantly underestimated. It is suggested that transient simulations might be required to achieve more accurate results. The numerical results are quite sensitive to the value of the turbulent Schmidt number. The comparisons however cannot clearly indicate which Schmidt number is most suitable for which type of flow due to the large number of other error sources ill the simulations, including steady-state RANS modelling, turbulence modelling, near-wall treatment limitations and unintended streamwise gradients in the turbulent kinetic energy profiles.
机译:使用商业代码Fluent 6.1对中性稳定大气边界层中的污染物扩散进行稳态RANS计算流体力学(CFD)模拟,用于以下三个案例研究:来自独立烟囱的烟羽扩散,来自屋顶通风口的低动量废气一个孤立的立方建筑模型和屋顶烟囱产生的高动量废气为一栋带有数个屋顶结构的低矮矩形建筑提供了动力。将结果与高斯模型,半经验式ASHRAE模型以及风洞和全面测量进行了比较。结果表明,在所有这三种情况下,在测试了所有湍流模型的情况下,侧向羽流扩散都被大大低估了。建议为了获得更准确的结果可能需要进行瞬态仿真。数值结果对湍流施密特数的值非常敏感。然而,由于大量其他误差源(包括稳态RANS建模,湍流建模,近壁处理限制和非预期的流向梯度),这些比较无法清楚地表明哪种Schmidt数最适合哪种流动类型。湍动能分布

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