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The Critical Richardson Number and Limits of Applicability of Local Similarity Theory in the Stable Boundary Layer

机译:稳定边界层中临界理查森数和局部相似性理论的适用范围

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摘要

Measurements of atmospheric turbulence made over the Arctic pack ice during the Surface Heat Budget of the Arctic Ocean experiment (SHEBA) are used to determine the limits of applicability of Monin-Obukhov similarity theory (in the local scaling formulation) in the stable atmospheric boundary layer. Based on the spectral analysis of wind velocity and air temperature fluctuations, it is shown that, when both the gradient Richardson number, Ri, and the flux Richardson number, Rf, exceed a 'critical value' of about 0.20-0.25, the inertial subrange associated with the Richardson-Kolmogorov cascade dies out and vertical turbulent fluxes become small. Some small-scale turbulence survives even in this supercritical regime, but this is non-Kolmogorov turbulence, and it decays rapidly with further increasing stability. Similarity theory is based on the turbulent fluxes in the high-frequency part of the spectra that are associated with energy-containing/flux-carrying eddies. Spectral densities in this high-frequency band diminish as the Richardson-Kolmogorov energy cascade weakens; therefore, the applicability of local Monin-Obukhov similarity theory in stable conditions is limited by the inequalities Ri < Ri (cr) and Rf < Rf (cr). However, it is found that Rf (cr) = 0.20-0.25 is a primary threshold for applicability. Applying this prerequisite shows that the data follow classical Monin-Obukhov local z-less predictions after the irrelevant cases (turbulence without the Richardson-Kolmogorov cascade) have been filtered out.
机译:在北冰洋表面热收支实验(SHEBA)期间对北极浮冰上的大气湍流进行的测量用于确定Monin-Obukhov相似性理论(在局部尺度公式中)在稳定大气边界层中的适用范围。根据风速和气温波动的频谱分析,结果表明,当梯度理查森数Ri和通量理查森数Rf都超过大约0.20-0.25的“临界值”时,惯性子范围与Richardson-Kolmogorov级联相关的消亡,垂直湍流变小。即使在这种超临界状态下,也存在一些小规模的湍流,但这是非柯尔莫哥洛夫湍流,并且随着进一步增加的稳定性而迅速衰减。相似性理论基于与包含能量/载流涡流相关的频谱高频部分中的湍流。当Richardson-Kolmogorov能量级联变弱时,该高频带中的频谱密度减小;因此,局部Monin-Obukhov相似性理论在稳定条件下的适用性受到不等式Ri

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