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A turbulence closure for the convective boundary layer based on a two-scale mass-flux approach

机译:基于两尺度质量通量方法的对流边界层湍流闭合

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摘要

The closure problem for the convective turbulence of the shear-free and low to moderate wind atmospheric boundary layer is considered. Non-Gaussian parameterizations are developed for fourth-order moments based on a two-scale mass-flux approach. With this approach the ballistic stirring of fluid by coherent structures is taken into account and the differences in the horizontal scales and spacing of the velocity and temperature fields are recognized. The fractional coverage of positive temperature variations is introduced, as well as the fractional coverage of positive vertical velocity fluctuations. The parameterizations are compared to those of the traditional mass-flux scheme and of the classical eddy-damped quasi-normal approach, and the principal similarities and dissimilarities are outlined. The results of testing the parameterizations against aircraft measurements at moderate wind and against large eddy simulation data of free convective conditions show good agreement between model predictions and data. [References: 54]
机译:考虑了无剪切低中风大气边界层对流湍流的封闭问题。基于两尺度质量通量方法,针对四阶矩开发了非高斯参数化。通过这种方法,考虑了通过相干结构对流体进行的弹道搅拌,并且可以识别出水平刻度以及速度和温度场的间距的差异。引入了正温度变化的分数覆盖率以及正垂直速度波动的分数覆盖率。将这些参数化与传统的质量通量方案和经典的涡流阻尼准法线方法进行了比较,并概述了主要的异同点。针对飞机在中等风速下的测量以及针对自由对流条件的大型涡流模拟数据测试参数化的结果表明,模型预测与数据之间具有良好的一致性。 [参考:54]

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