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CFD modelling of dispersion in neutrally and stably-stratified atmospheric boundary layers: results for Prairie Grass and Thorney Island

机译:中性和稳定分层大气边界层分散的CFD建模:草原草和索尼岛的结果

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摘要

It is a known problem that CFD models using the standard k - ε turbulence model do not maintain the correct atmospheric boundary layer (ABL) profiles along a flat, unobstructed domain. The present work examines the impact of these errors in the ABL profiles on dispersion model predictions for three field-scale experiments from the Prairie Grass and Thorney Island datasets. The modified ABL profiles produced by the CFD model in the Prairie Grass experiments result in differences in the predicted concentrations of up to a factor of two, as compared to a reference model. For the Thorney Island experiment, the results for the standard k - ε turbulence model are sensitive to the ground surface roughness and problems are identified in relation to the grid resolution near the ground. Industrial risk assessments involving atmospheric dispersion of toxic or flammable substances using CFD models should take into account these limitations of the k - ε turbulence model.
机译:这是一种已知的问题,即使用标准k - ε湍流模型的CFD模型不保持沿着平坦的无障碍域的正确大气边界层(ABL)曲线。 目前的工作审查了来自草原草和索尼岛数据集的三个现场规模实验的分散模型预测中的ABL简档对ABL简档的影响。 与参考模型相比,由Prairie Grass实验中的CFD模型产生的修改ABL谱导致预测浓度的预测浓度差异,与参考模型相比。 对于索尼岛实验,标准K - ε湍流模型的结果对地面粗糙度敏感,与地面附近的网格分辨率识别出问题。 涉及使用CFD模型的毒性或易燃物质大气分散的工业风险评估应考虑到K - ε湍流模型的这些限制。

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