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首页> 外文期刊>Journal of oceanography >Assessment of turbulence closure models for resonant inertial response in the oceanic mixed layer using a large eddy simulation model
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Assessment of turbulence closure models for resonant inertial response in the oceanic mixed layer using a large eddy simulation model

机译:使用大涡模拟模型评估大洋混合层中共振惯性响应的湍流闭合模型

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Large eddy simulation (LES) of the resonant inertial response of the upper ocean to strong wind forcing is carried out; the results are used to evaluate the performance of each of the two second-order turbulence closure models presented by Mellor and Yamada (Rev Geophys Space Phys 20:851-875, 1982) (MY) and by Nakanishi and Niino (J Meteorol Soc Jpn 87:895-912, 2009) (NN). The major difference between MY and NN is in the formulation of the stability functions and the turbulent length scale, both strongly linked with turbulent fluxes; in particular, the turbulent length scale in NN, unlike that in MY, is allowed to decrease with increasing density stratification. We find that MY underestimates and NN overestimates the development of mixed layer features, for example, the strong entrainment at the base of the oceanic mixed layer and the accompanying decrease of sea surface temperature. Considering that the stability functions in NN perform better than those in MY in reproducing the vertical structure of turbulent heat flux, we slightly modify NN to find that the discrepancy between LES and NN can be reduced by more strongly restricting the turbulent length scale with increasing density stratification.
机译:对上层海洋对强风的共振惯性响应进行了大涡模拟(LES)。结果用于评估由Mellor和Yamada(Rev Geophys Space Phys 20:851-875,1982)(MY)和Nakanishi和Niino(J Meteorol Soc Jpn)提出的两个二阶湍流闭合模型的性能87:895-912,2009)(NN)。 MY和NN之间的主要区别在于稳定性函数和湍流长度尺度的表述,两者都与湍流通量密切相关。特别是,与MY不同,NN中的湍流长度尺度随着密度分层的增加而减小。我们发现,MY低估了NN,而NN高估了混合层特征的发展,例如,海洋混合层底部强夹带和随之而来的海面温度下降。考虑到NN中的稳定函数在再现湍流热通量的垂直结构方面比MY中的稳定函数更好,因此我们对NN稍加修改,发现可以通过更强烈地限制湍流长度尺度随密度的增加而减小LES和NN之间的差异。分层。

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