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Excitation mechanism of near-inertial waves in baroclinic tidal flow caused by parametric subharmonic instability

机译:参数次谐波失稳引起斜压潮汐流中近惯性波的激发机理

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Parametric subharmonic instability (PSI) transfers energy from low-mode semidiurnal baroclinic tidal flow to high-mode near-inertial waves at latitudes ~30°, inducing strong ocean mixing and hence affecting the global ocean circulation. Nevertheless, intuitive descriptions of the physical mechanism for energy transfer by PSI are very sparse. In this study, we reformulate this phenomenon to present a visual image of its mechanism based on a combination of simple classical theories such as beats and parametric excitation without adhering to a strict mathematical formula. It is shown that two small-scale near-inertial waves with slightly different wavenumbers propagating in opposite directions superpose to create beats. When the resulting beats have the peak-to-peak length and the phase velocity equal to the wavelength and the phase velocity of large-scale semidiurnal baroclinic tidal flow, respectively, continuous acceleration of near-inertial motions takes place under the effects of convergence and horizontal shear of the background semidiurnal baroclinic tidal flow. The resonant condition for PSI can thus be easily understood by introducing the well-known concept of beats which also provides a natural explanation for the large difference in spatial scales between the semidiurnal baroclinic tidal flow and the resulting near-inertial waves.
机译:参数次谐波失稳(PSI)将能量从低模半日斜压潮汐流转移到纬度〜30°的高模近惯性波,引起强烈的海洋混合,从而影响了全球海洋环流。然而,对通过PSI进行能量传输的物理机制的直观描述非常稀疏。在这项研究中,我们重新构建了这种现象,以便在不遵循严格的数学公式的情况下,根据简单的经典理论(如拍子和参数激励)的组合来呈现其机理的视觉图像。结果表明,在相反方向上传播的波数略有不同的两个小尺度近惯性波叠加在一起产生了节拍。当所得节拍的峰峰值长度和相速度分别等于大规模半日斜压潮汐流的波长和相速度时,近惯性运动会在会聚和加速作用下连续加速。背景半日斜斜潮汐流量的水平剪切。因此,通过引入众所周知的拍子概念,可以很容易地理解PSI的共振条件,这也为半日斜压潮汐流和所产生的近惯性波之间的空间尺度差异提供了自然的解释。

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