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An Extension of the Mellor-Yamada Model to the Terra Incognita Zone for Dry Convective Mixed Layers in the Free Convection Regime

机译:自由对流条件下干对流混合层的Mellor-Yamada模型扩展到Terra Incognita区

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摘要

The terra incognita (TI) or grey zone arises in conventional planetary boundary-layer parametrizations when the grid resolution of a numerical model is comparable to the size of the energy-containing turbulent eddies 1 km or less. Here, we investigate a simple, plausible extension of the Mellor-Yamada (MY) level-3 scheme for TI-scale grid size using a large-eddy simulation (LES) as a benchmark. Horizontal filtering of the benchmark simulation data for the dry convective mixed layer in the free convection regime yields subfilter-scale components whose statistics are then retrieved for various filter sizes. This leads to a modified MY level-3 scheme for TI-scale grid sizes. The proposed TI scheme incorporates: (1) modification of various length scales in the conventional MY scheme by an empirical function that depends on the horizontal grid size normalized by the convective boundary-layer height; (2) a new length scale for horizontal turbulent fluxes; and (3) a linear relationship between the local dissipation length and subfilter-scale turbulent kinetic energy. A posteriori tests of the proposed TI scheme show a much improved performance compared with the conventional MY level-3 scheme. The ratio of the grid-scale to the subgrid-scale turbulent intensity is comparable to that obtained from the filtered LES solutions. Sensitivity tests show that the modification of the dissipation length scales has the largest impact, while the new length scale for horizontal fluxes also proves important. A simulation that includes all of the above modifications results in the optimum performance.
机译:当数值模型的网格分辨率与1 km或更短的含能量湍流涡流的大小相当时,在常规行星边界层参数化中会出现terra隐身(TI)或灰色区域。在这里,我们以大涡模拟(LES)为基准,研究了TI尺度网格大小的Mellor-Yamada(MY)3级方案的简单,合理的扩展。在自由对流状态下对干对流混合层的基准模拟数据进行水平过滤会产生子过滤器规模的组件,然后针对各种过滤器大小检索其统计信息。这导致针对TI尺度网格大小的经过修改的MY 3级方案。拟议的TI方案包括:(1)通过经验函数修改常规MY方案中的各种长度尺度,该经验函数取决于通过对流边界层高度归一化的水平网格大小; (2)针对水平湍流的新长度刻度; (3)局部耗散长度与子滤器级湍动能之间的线性关系。与传统的MY level 3方案相比,所提出的TI方案的后验测试显示出性能大大提高。网格尺度与亚网格尺度的湍流强度之比与从过滤后的LES溶液获得的比率相当。灵敏度测试表明,耗散长度标尺的修改影响最大,而水平通量的新长度标尺也被证明很重要。包括所有上述修改的仿真产生了最佳性能。

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