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A systematic numerical study of the tidal instability in a rotating triaxial ellipsoid

机译:旋转三轴椭球体中潮汐不稳定性的系统数值研究

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摘要

The full non-linear evolution of the tidal instability is studied numerically in an ellipsoidal fluid domain relevant for planetary cores applications. Our numerical model, based on a finite element method, is first validated by reproducing some known analytical results. This model is then used to address open questions that were up to now inaccessible using theoretical and experimental approaches. Growth rates and mode selection of the instability are systematically studied as a function of the aspect ratio of the ellipsoid and as a function of the inclination of the rotation axis compared to the deformation plane. We also quantify the saturation amplitude of the flow driven by the instability and calculate the viscous dissipation that it causes. This tidal dissipation can be of major importance for some geophysical situations and we thus derive general scaling laws which are applied to typical planetary cores.
机译:在与行星芯应用相关的椭圆形流体域中,对潮汐不稳定性的整个非线性演化进行了数值研究。我们基于有限元方法的数值模型首先通过重现一些已知的分析结果进行验证。然后,使用该模型来解决尚未解决的问题,这些问题目前尚无法通过理论和实验方法解决。根据椭圆形的长宽比以及旋转轴相对于变形平面的倾斜度,系统地研究了增长率和不稳定性的模式选择。我们还可以量化由不稳定性驱动的流动的饱和振幅,并计算其引起的粘性耗散。这种潮汐消散对于某些地球物理情况可能非常重要,因此,我们得出了适用于典型行星芯的一般比例定律。

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