首页> 外文期刊>Journal of Physical Oceanography >Effects of Turbulent Mixing and Horizontal Shear on Double-Diffusive Interleaving in the Central and Western Equatorial Pacific
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Effects of Turbulent Mixing and Horizontal Shear on Double-Diffusive Interleaving in the Central and Western Equatorial Pacific

机译:湍流混合和水平剪切对中西部赤道太平洋双扩散交织的影响

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摘要

The effects of small-scale turbulence and the horizontal shear on double-diffusive interleaving are treated in the framework of a linear stability problem in the equatorial β-plane approximation. The model predicts the decrease of the vertical wavenumber (m_(max)) and growth rate (λ_(max)) for the fastest-growing intrusion with the increase in the turbulent diffusivity and predicts increased λ_(max) and decreased m_(max) with the horizontal shear of the mean zonal flow. The effects of turbulent mixing are analyzed at different values of the Prandtl number, and the criteria of instability are obtained analytically for some simple cases. Special attention is focused on the influence of the horizontal shear on instability, as with the f-plane models of interleaving. The CTD profiling data obtained from Korean and Russian research vessels are used to prove the model. A closely spaced CTD section across the equator at 176°16′W shows several intrusive layers with high lateral coherence throughout the section, which are suddenly broken inside a narrow latitudinal band. The model suggests that the breakdown results from enhanced turbulent mixing in the wake behind Baker Island, which is situated just 10 n mi west of the section. The CTD data collected in the section across the equator at 152°30′E reveal an intensification of intrusions in a latitudinal band where the Equatorial Undercurrent is found. In accordance with the model, the intensification supposedly results from the effect of the horizontal shear attributed to the undercurrent. In terms of the applications of the model results, the value of the turbulent mixing ratio is estimated in the wake behind Baker Island, and mechanisms of intrusive layering are discussed. It is found that the intrusions observed in a meridional section, from 2° to 1°S at 176°16′W, correspond satisfactorily to the 2D baroclinic instability triggered by double diffusion.
机译:在赤道β平面近似的线性稳定性问题的框架内,处理了小尺度湍流和水平剪切对双扩散交织的影响。该模型预测随着湍流扩散率的增加,增长最快的入侵的垂直波数(m_(max))和增长率(λ_(max))减小,并预测λ_(max)增大和m_(max)减小平均纬向流的水平剪切力。在不同的Prandtl值下分析了湍流混合的影响,并通过分析获得了一些简单情况下的不稳定性判据。与交织的f平面模型一样,应特别注意水平剪切对不稳定性的影响。从韩国和俄罗斯研究船获得的CTD分析数据用于证明模型。在176°16′W处横穿赤道的CTD截面间隔很近,显示出几个具有贯穿整个截面的高相干性的侵入层,这些侵入层在狭窄的纬度带内突然断裂。该模型表明,击穿是由于贝克岛后面的尾流中湍流混合增强,而贝克岛位于断面以西10英里处。在152°30'E处横穿赤道的断面收集的CTD数据显示,在发现赤道暗流的纬度带上侵入增强。根据该模型,强化可能是由于暗流引起的水平剪切作用所致。根据模型结果的应用,在贝克岛后面的尾流中估算了湍流混合比的值,并讨论了侵入分层的机理。结果发现,在子午线区域(176°16'W,从2°到1°S)观察到的侵入与由双重扩散触发的2D斜压不稳定性令人满意。

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