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Nonlinear flow within a triaxial ellipsoidal planet driven by combined longitudinal and latitudinal libration

机译:纵向和横向自由组合驱动的三轴椭圆形行星内的非线性流动

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摘要

Deformed by tidal forces, the cavity of a planetary fluid core may be in the shape of a triaxial ellipsoid x ~2/a ~2+y ~2/b ~2+z ~2/c ~2=1, where a, b and c are different semi-axes and z is in the direction of rotation. Longitudinal libration of the planet is a periodic oscillation of its rotation rate around its rotating axis while latitudinal libration is the inclination of axis of rotation to the normal of the planetary orbital plane. The motion of a homogeneous fluid confined in a triaxial ellipsoidal cavity, which undergoes both latitudinal and longitudinal libration, is investigated via direct numerical simulation using an EBE (Element-By-Element) finite element method. It is shown that latitudinal libration leads to the resonance with spheroidal inertial modes while longitudinal libration has no contribution. On the other hand, longitudinal libration modifies the flow structure in dramatically different ways in the prograde phase (when the planet's rotation speeds up) and retrograde phase (when the planet slows down). Implications of the result for planetary evolution are also discussed.
机译:行星流体芯的空腔在潮汐力的作用下可能呈三轴椭圆形x〜2 / a〜2 + y〜2 / b〜2 + z〜2 / c〜2 = 1的形状,其中a, b和c是不同的半轴,z沿旋转方向。行星的纵向自由度是其旋转速度围绕其旋转轴的周期性振荡,而纬度自由度是旋转轴相对于行星轨道平面法线的倾斜度。通过使用EBE(元素-元素-元素)有限元方法的直接数值模拟,研究了均质流体在三轴椭圆形腔中的运动,该运动同时经历了横向和纵向方向的释放。结果表明,经纬度释放引起球惯性模态的共振,而经纬度释放则无贡献。另一方面,纵向解放在推进阶段(当行星旋转加速时)和逆行阶段(当行星减速时)以明显不同的方式改变流动结构。还讨论了结果对行星演化的影响。

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