首页> 外文期刊>Physics of the Earth and Planetary Interiors: A Journal Devoted to Obsevational and Experimerntal Studies of the Chemistry and Physics of Planetary Interiors and Their Theoretical Interpretation >Effect of a stably stratified layer near the outer boundary in numerical simulations of a magnetohydrodynamic dynamo in a rotating spherical shell and its implications for Earth's core
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Effect of a stably stratified layer near the outer boundary in numerical simulations of a magnetohydrodynamic dynamo in a rotating spherical shell and its implications for Earth's core

机译:旋转球壳磁流体动力学发电机数值模拟中外边界附近稳定层的影响及其对地球核心的影响

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摘要

We investigate the effects of stable thermal stratification near the outer boundary in numerical simulations of a magnetohydrodynamic (MHD) dynamo in a rotating spherical shell. The stratified layer acts as an interface for the flow between the convective and stratified regions and filters the magnetic field. Moreover, the stratified boundary also filters the energy generated in the convective region. The strongly multipolar magnetic field at high Rayleigh numbers without a stratified region could filter a dipolar-likemagnetic field when the stratified region is imposed. The main findings are described as follows: Zonal flow would be expected in high latitude region in a stratified layer. The penetrative flow in the stratified region is caused by a thermal wind at high latitudes but is not found at mid to low latitudes. The horizontal scale of convective flow with and without stratification does not differ greatly. The implications for the dynamics in Earth's core are as follows: (1) A stratified region near the top of the core would be expected at low latitudes but not at high latitudes because thermal winds can penetrate into the stratified region if a dynamo exists. (2) For the existence of small-scale features in the geomagnetic field, laterally heterogeneous heat flux across the core-mantle boundary would be necessary or helpful if a stratified region near the top of the Earth's core is plausible.
机译:我们研究在旋转球形壳中的磁流体动力学(MHD)发电机的数值模拟中,在外边界附近稳定热分层的影响。分层层用作对流区域和分层区域之间流动的界面,并过滤磁场。此外,分层边界还过滤了在对流区域产生的能量。当施加分层区域时,在高瑞利数下没有分层区域的强多极磁场可以过滤类似偶极子的磁场。主要研究结果描述如下:在分层的高纬度区域中,预计会出现带状流。分层区域中的渗透流是由高纬度地区的热风引起的,但在中低纬度地区没有发现。有分层和无分层的对流的水平尺度没有太大差异。对地球核心动力学的影响如下:(1)在低纬度而不是在高纬度,预计在核心顶部附近会出现分层区域,因为如果存在发电机,热风会渗透到分层区域中。 (2)对于地磁场中存在小尺度特征的情况,如果在地心顶部附近的分层区域是合理的话,则跨过地核-地幔边界的横向不均匀热通量将是必要的或有帮助的。

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