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首页> 外文期刊>Boundary-layer Meteorology >The Share of the Mean Turbulent Kinetic Energy in the Near-Neutral Surface Layer for High and Low Wind Speeds
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The Share of the Mean Turbulent Kinetic Energy in the Near-Neutral Surface Layer for High and Low Wind Speeds

机译:高中速度近中立表面层中的平均湍流动能的份额

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摘要

We examine the dependence on wind speed of the share of the mean turbulent kinetic energy among the three velocity components in the near-neutral surface layer. To contrast the general behaviour and the local effects, four datasets are considered, corresponding to different surfaces and environmental conditions. For high wind speeds (i.e., wind speed approximate to 10 , the shares are well-defined and about the same for all sites. As wind speed decreases (becoming approximate to 1 ), large record-to-record variability occurs giving, on average, an almost isotropic state for the horizontal velocity components. Through spectral analysis, we relate this behaviour to the low-frequency, submeso motions and to the lack of conditions required by Reynolds averaging. The implications for modelling are also discussed, showing that the wind speed, or a related quantity, must be accounted for, besides stability, in second-order closures.
机译:我们研究了近中性表面层中的三个速度分量中平均湍流动能的份额的依赖性。 为了对比一般行为和局部效果,考虑四个数据集,对应于不同的表面和环境条件。 对于高风速(即风速近似为10,股票对所有站点有明确定义,大致相同。随着风速减小(近似为1),平均出现大的记录到记录变异性 ,水平速度分量的几乎各向同性状态。通过光谱分析,我们将这种行为与雷诺斯平均所需的缺乏条件相关。还讨论了对建模的影响,表明风 除了稳定性,速度或相关数量必须以二阶封装计入速度。

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