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Small-Scale Potential Vorticity in the Upper-Ocean Thermocline

机译:上海洋温跃层的小规模涡旋

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Twenty Electromagnetic Autonomous Profiling Explorer (EM-APEX) floats in the upper-ocean thermocline of the summer Sargasso Sea observed the temporal and vertical variations of Ertel potential vorticity (PV) at 7-70-m vertical scale, averaged over O(4-8)-km horizontal scale. PV is dominated by its linear components-vertical vorticity and vortex stretching, each with an rms value of similar to 0.15f. In the internal wave frequency band, they are coherent and in phase, as expected for linear internal waves. Packets of strong, 0.2f, vertical vorticity and vortex stretching balance closely with a small net rms PV. The PV spectrum peaks at the highest resolvable vertical wavenumber, similar to 0.1 cpm. The PV frequency spectrum has a red spectral shape, a -1 spectral slope in the internal wave frequency band, and a small peak at the inertial frequency. PV measured at near-inertial frequencies is partially attributed to the non-Lagrangian nature of float measurements. Measurement errors and the vortical mode also contribute to PV in the internal wave frequency band. The vortical mode Burger number, computed using time rates of change of vertical vorticity and vortex stretching, is 0.2-0.4, implying a horizontal kinetic energy to available potential energy ratio of similar to 0.1. The vortical mode energy frequency spectrum is 1-2 decades less than the observed energy spectrum. Vortical mode energy is likely underestimated because its energy at vertical scales 70 m was not measured. The vortical mode to total energy ratio increases with vertical wavenumber, implying its importance at small vertical scales.
机译:二十个电磁自主分布图浏览器(EM-APEX)漂浮在夏季Sargasso海的上层海洋跃层中,观察到Ertel势涡度(PV)在7-70 m垂直尺度上的时间和垂直变化,平均水平为O(4- 8)公里的水平比例尺。 PV由其线性分量(垂直涡度和涡旋拉伸)主导,均方根值接近0.15f。在线性内部波中,它们在内部波频带中是相干且同相的。垂直涡度大于0.2f的数据包和涡旋拉伸与小净均方根PV紧密平衡。 PV光谱在最高可分辨垂直波数处达到峰值,类似于0.1 cpm。 PV频谱具有红色频谱形状,内部波频带中的-1频谱斜率和惯性频率处的小峰值。在近惯性频率下测得的PV部分归因于浮法测量的非拉格朗日特性。测量误差和涡旋模式也会对内部波频段的PV产生影响。使用垂直涡度和涡旋拉伸的时间变化率计算出的涡模伯格数为0.2-0.4,这意味着水平动能与可用势能之比近似于0.1。涡模能谱比观察到的能谱小1-2个十年。垂直模式能量可能被低估了,因为未测量垂直尺度> 70 m的能量。涡模与总能量之比随垂直波数的增加而增加,这表明其在小垂直尺度上的重要性。

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