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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Penetration of columnar convection into an outer stably stratified layer in rapidly rotating spherical fluid shells
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Penetration of columnar convection into an outer stably stratified layer in rapidly rotating spherical fluid shells

机译:柱状对流在快速旋转的球形流体壳中渗透成稳定的外部分层层

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摘要

Penetration of columnar convection in a rapidly rotating spherical shell into a stably stratified fluid layer near the outer boundary is investigated. An analytical expression for the penetration thickness is derived by considering perturbations to a stably stratified rotating Boussinesq fluid in a semi-infinite region with the rotation axis tilted relative to the gravity axis. Solutions for the response to vortical motion applied at the bottom boundary show that the penetration thickness is proportional to the angular velocity of the system and to the horizontal scale of the vortices, and inversely proportional to the Brunt-Vaisala frequency in the stratified layer. Thus the stratification acts as a low-pass filter to forcing from below. The analytic expression for the penetration thickness given good agreement with numerical results for critical convection in a rotating spherical shell with a stably stratified outer layer. The results suggest that if deep convection is to penetrate the stratified layer observed by the Galileo probe then the horizontal scale needs to be more than several thousand kilometers. Parameter values from recent studies of the thermal history of the Earth's core also suggest that any convection columns with horizontal scale large than several hundred kilometers would be expected to penetrate into any stable layer in the outer part of the Earth's fluid outer core when the Lorentz force plays a subdominant role.
机译:研究了柱状对流在快速旋转的球形壳中渗透到外边界附近的稳定分层的流体层中的情况。通过考虑对旋转轴相对于重力轴倾斜的半无限区域中的稳定分层旋转Boussinesq流体的扰动,得出穿透厚度的解析表达式。对在底部边界处施加的涡旋运动的响应的解决方案表明,穿透厚度与系统的角速度和涡旋的水平比例成正比,与分层层中的Brunt-Vaisala频率成反比。因此,分层起着低通滤波器的作用,迫使其从下方进入。穿透厚度的解析表达式与具有稳定分层外层的旋转球形壳中的临界对流数值结果具有良好的一致性。结果表明,如果深对流要穿透伽利略探测器观测到的分层层,那么水平尺度需要超过数千公里。最近对地核热史的研究得出的参数值还表明,当洛伦兹力作用时,任何水平尺度大于几百公里的对流柱都有望渗入地球流体外核外部的任何稳定层中。起着主要作用。

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