论文标题

近惯性波与反气旋涡流的相互作用

Interaction of near-inertial waves with an anticyclonic vortex

论文作者

Kafiabad, Hossein A., Vanneste, Jacques, Young, William R.

论文摘要

反气旋涡流聚焦和陷阱近惯性波,因此近惯性能量水平在涡旋芯内升高。该过程的某些方面,包括波浪对涡流的非线性修饰,是通过被困的近乎惯性本征的存在来解释的。这些涡流特征模量很容易被水平刻度远大于涡流半径大得多的初始波。我们使用近惯性动力学的波浪平均模型研究了这一过程,并将其理论预测与三维BousSinesQ方程的数值解相提并论。在线性近似中,该模型预测了本本特征频率和空间结构,以及近乎惯性的波浪能特征,其特征在于大约时间周期性,方位角不变的模式。波浪平均模型代表波浪在涡流上通过波诱导的对潜在涡度的贡献的贡献,与波的动能密度成正比。考虑到这一点时,预计模态频率将随着初始激发的能量线性增加。线性和非线性预测都与BousSinesQ结果令人信服。

Anticyclonic vortices focus and trap near-inertial waves so that near-inertial energy levels are elevated within the vortex core. Some aspects of this process, including the nonlinear modification of the vortex by the wave, are explained by the existence of trapped near-inertial eigenmodes. These vortex eigenmodes are easily excited by an initial wave with horizontal scale much larger than that of the vortex radius. We study this process using a wave-averaged model of near-inertial dynamics and compare its theoretical predictions with numerical solutions of the three-dimensional Boussinesq equations. In the linear approximation, the model predicts the eigenmode frequencies and spatial structures, and a near-inertial wave energy signature that is characterized by an approximately time-periodic, azimuthally invariant pattern. The wave-averaged model represents the nonlinear feedback of the waves on the vortex via a wave-induced contribution to the potential vorticity that is proportional to the Laplacian of the kinetic energy density of the waves. When this is taken into account, the modal frequency is predicted to increase linearly with the energy of the initial excitation. Both linear and nonlinear predictions agree convincingly with the Boussinesq results.

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