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Nonlinear excitation of zonal flows by rossby wave turbulence

机译:罗斯比波湍流对地带流的非线性激发

摘要

We apply the wave-kinetic approach to study nonlinearly coupled Rossby wave-zonal flow fluid turbulence in a two-dimensional rotating fluid. Specifically, we consider for the first time nonlinear excitations of zonal flows by a broad spectrum of Rossby wave turbulence. Short-wavelength Rossby waves are described here as a fluid of quasi-particles, and are referred to as the 'Rossbyons'. It is shown that Reynolds stresses of Rossbyons can generate large-scale zonal flows. The result should be useful in understanding the origin of large-scale planetary and near-Earth atmospheric circulations. It also provides an example of a turbulent wave background driving a coherent structure.
机译:我们应用波动力学方法研究二维旋转流体中的非线性耦合Rossby波带流流体湍流。具体来说,我们首次考虑了由广泛的Rossby波湍流引起的纬向流非线性激励。短波Rossby波在这里被描述为准粒子的流体,被称为“ Rossbyons”。结果表明,Rossbyons的雷诺应力会产生大规模的纬向流。该结果应有助于理解大规模行星和近地大气环流的起源。它还提供了驱动相干结构的湍流背景的示例。

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