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One-Equation Turbulence Modelling for Atmospheric and Engineering Applications

机译:大气和工程应用的单方程湍流建模

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摘要

A new algebraic turbulent length scale model is developed, based on previous one-equation turbulence modelling experience in atmospheric flow and dispersion calculations. The model is applied to the neutral Ekman layer, as well as to fully-developed pipe and channel flows. For the pipe and channel flows examined the present model results can be considered as nearly equivalent to the results obtained using the standard k–ɛ model. For the neutral Ekman layer, the model predicts satisfactorily the near-neutral Cabauw friction velocities and a dependence of the drag coefficient versus Rossby number very close to that derived from published (G. N. Coleman) direct numerical simulations. The model underestimates the Cabauw cross-isobaric angles, but to a less degree than the cross-isobar angle versus Rossby dependence derived from the Coleman simulation. Finally, for the Cabauw data, with a geostrophic wind magnitude of 10 ms−1, the model predicts an eddy diffusivity distribution in good agreement with semi-empirical distributions used in current operational practice.
机译:基于先前在大气流动和弥散计算中的单方程湍流建模经验,开发了一种新的代数湍流长度尺度模型。该模型适用于中性Ekman层以及完全开发的管道和通道流。对于所检查的管道和通道流量,本模型的结果可以认为与使用标准k–ɛ模型获得的结果几乎相等。对于中性Ekman层,该模型可以令人满意地预测接近中性的Cabauw摩擦速度,并且阻力系数与Rossby数的相关性非常接近已发布的(G. N. Coleman)直接数值模拟得出的结果。该模型低估了Cabauw的等压角,但程度低于等压角与从Coleman模拟得出的Rossby相关性。最后,对于Cabauw数据,地转风风量为10 ms-1 ,该模型预测的涡流扩散率分布与当前运行实践中使用的半经验分布非常吻合。

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