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Inertial Wave Turbulence Driven by Elliptical Instability

机译:椭圆形不稳定驱动的惯性波湍流

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摘要

The combination of elliptical deformation of streamlines and vorticity can lead to the destabilization of any rotating flow via the elliptical instability. Such a mechanism has been invoked as a possible source of turbulence in planetary cores subject to tidal deformations. The saturation of the elliptical instability has been shown to generate turbulence composed of nonlinearly interacting waves and strong columnar vortices with varying respective amplitudes, depending on the control parameters and geometry. In this Letter, we present a suite of numerical simulations to investigate the saturation and the transition from vortex-dominated to wave-dominated regimes. This is achieved by simulating the growth and saturation of the elliptical instability in an idealized triply periodic domain, adding a frictional damping to the geostrophic component only, to mimic its interaction with boundaries. We reproduce several experimental observations within one idealized local model and complement them by reaching more extreme flow parameters. In particular, a wave-dominated regime that exhibits many signatures of inertial wave turbulence is characterized for the first time. This regime is expected in planetary interiors.
机译:流线和涡度的椭圆形变形的组合可以通过椭圆形不稳定性导致任何旋转流动的稳定性。已经调用了这种机制作为经受潮汐变形的行星芯中的可能湍流来源。已经示出了椭圆形不稳定性的饱和度,从而产生由非线性相互作用的波和具有变化相应幅度的强柱状涡流组成的湍流,这取决于控制参数和几何形状。在这封信中,我们提出了一套数值模拟,以研究血管主导地位的饱和度和转变为主导的制度。这是通过模拟理想化的三个周期域中的椭圆形不稳定性的生长和饱和来实现的,仅为几个嗜角性分量添加摩擦阻尼,以模仿其与边界的相互作用。我们在一个理想化的本地模型中重现了几种实验观察,并通过达到更极端的流量参数来补充它们。特别地,表现了呈现许多惯性波湍流签名的波导的制度。这一制度在行星室内设计。

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  • 来源
    《Physical review letters》 |2017年第8期|034502.1-034502.6|共6页
  • 作者单位

    Aix Marseille Univ CNRS Cent Marseille IRPHE UMR 7342 Marseille France;

    Aix Marseille Univ CNRS Cent Marseille IRPHE UMR 7342 Marseille France;

    Univ Leeds Sch Math Dept Appl Math Leeds LS2 9JT W Yorkshire England;

    Aix Marseille Univ CNRS Cent Marseille IRPHE UMR 7342 Marseille France;

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