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首页> 外文期刊>Journal of the Atmospheric Sciences >Anisotropies and universality of buoyancy-dominated turbulent fluctuations: A large-eddy simulation study
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Anisotropies and universality of buoyancy-dominated turbulent fluctuations: A large-eddy simulation study

机译:浮力为主的湍流波动的各向异性和普遍性:大涡模拟研究

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Turbulent fluctuations of both velocity and temperature fields, issuing from high-resolution large-eddy simulations, have been analyzed in convective boundary layers. The numerically simulated flows are strongly anisotropic at large scales: this is due both to the action of buoyancy and to the imposed geostrophic wind. Their relative weight is varied so that one experiment's results are much more convective than the other. To property disentangle anisotropic properties, the authors exploit both standard statistical indicators, like skewness coefficients, and the three-dimensional rotational group decomposition SO(3). Two main conclusions can be drawn. First, despite the strong anisotropies at large scales, isotropy is statistically recovered at scales much smaller than the large ones. Second, relevant statistical indicators of turbulence such as the scaling exponents, of both velocity and temperature fields, are remarkably close for the two experiments. Implications of these findings for the problem of subgrid-scale modeling are discussed.
机译:在高分辨率对流边界层中分析了高分辨率高分辨率大涡模拟产生的速度场和温度场的湍流波动。数值模拟的流动在大范围内是强烈各向异性的:这既是由于浮力的作用,又是由于施加了地转风。它们的相对权重各不相同,因此一个实验的对流结果要比另一个实验对流得多。为了解决各向异性的属性问题,作者利用了偏斜系数等标准统计指标和三维旋转群分解SO(3)。可以得出两个主要结论。首先,尽管在大尺度上有很强的各向异性,但从统计角度来看,各向同性在远小于大尺度的尺度上得以恢复。第二,两个实验的湍流相关统计指标,例如速度场和温度场的比例指数,都非常接近。讨论了这些发现对亚网格规模建模问题的影响。

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