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Latitude-dependent finescale turbulent shear generations in the Pacific tropical-extratropical upper ocean

机译:太平洋热带-热带外高洋中与纬度有关的细尺度湍流切变世代

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摘要

Turbulent mixing, which is critically important for the equilibrium of ocean circulation, is controlled by finescale turbulent shear (S2) of oceanic flows through shear instability. Although the relationship between S2 and mixing is well understood, the latitude-dependent generation processes of S2 remain poorly known due to the lack of geographically extensive, long-term finescale velocity measurements. Here, using one-year ADCP data from 17 moorings along 143°E, we first show that the upper-ocean S2 and its resultant mixing rate have a W-shaped latitudinal distribution in the tropical-extratropical northwest Pacific with peaks at 0–2°N, 12–14°N, and 20–22°N, respectively. Further analyses reveal that these S2 peaks are caused by vertically-sheared equatorial currents, parametric subharmonic instability of diurnal tide, and anticyclonic eddy’s inertial chimney effect, respectively. As climate model simulations are sensitive to the mixing parameterizations, our findings highlight the need to incorporate the latitude-dependent generation mechanisms of S2 to improve climate models’ prediction capabilities.
机译:湍流混合对海洋环流的平衡至关重要,它受剪切不稳定性影响的细流湍流切变(S 2 )控制。尽管人们很好地了解了S 2 和混合之间的关系,但由于缺乏地理上广泛的长期精细尺度,S 2 的纬度相关生成过程仍然知之甚少速度测量。在这里,使用来自143°E的17个系泊的一年ADCP数据,我们首先表明,上热带S 2 及其混合速率在热带-热带地区呈W形纬向分布西北太平洋,其峰值分别在0–2°N,12–14°N和20–22°N。进一步的分析表明,这些S 2 峰分别是由垂直剪切的赤道流,日潮的参数次谐波不稳定性和反气旋涡的惯性烟囱效应引起的。由于气候模型模拟对混合参数化很敏感,因此我们的研究结果突出表明需要结合S 2 的纬度相关生成机制来提高气候模型的预测能力。

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