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 >An implication for the origin of stratification below the core-mantle boundary region in numerical dynamo simulations in a rotating spherical shell
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An implication for the origin of stratification below the core-mantle boundary region in numerical dynamo simulations in a rotating spherical shell

机译:旋转球壳中的数值发电机模拟中,在地幔边界区域以下的分层成因意义

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摘要

We investigate numerical dynamo simulations in a rotating spherical shell including a stably stratified region below the outer boundary to discuss dynamo solution behaviors and some implications for the dynamics of Earth's core. As a consequence of over 50 numerical dynamo simulations, we found strong field, weak field and failed dynamos as a function of magnetic Prandtl number and thickness of stratified region. The weak field regime is not a very stable solution of dynamo action with a stably stratified region because a bistable solution is found depending on the initial amplitude of magnetic field. When the initial amplitude of magnetic field is given as a large value, the weak field regime changes into the strong field regime. One outcome of the study is that when the Earth's core evolution has high conductivity, the dynamo action with purely thermal stratification may not be suitable for explaining the generation of geomagnetic field. This is because the dynamo solution is likely to fail with a thick stratified region. This implies that the origin of stratification is likely to be compositional rather thermal in origin. This is consistent with the 1-D seismic velocity anomalies found from seismic waveform analyses. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们研究了旋转球壳中的数值发电机仿真,该球壳包括外边界下方的稳定分层区域,以讨论发电机解决方案的行为以及对地球核心动力学的一些影响。由于进行了50多个数值发电机模拟,我们发现强磁场,弱磁场和失效的发电机是磁Prandtl数和分层区域厚度的函数。弱磁场机制不是具有稳定分层区域的发电机作用的非常稳定的解决方案,因为根据磁场的初始振幅发现了双稳态解决方案。当将磁场的初始振幅设为较大值时,弱磁场状态变为强磁场状态。研究的一项结果是,当地球的核心演化具有高电导率时,纯热分层的发电机作用可能不适合解释地磁场的产生。这是因为发电机解决方案可能会因分层区域较厚而失败。这意味着分层的起源很可能是成分而不是热的起源。这与从地震波形分析中发现的一维地震速度异常是一致的。 (C)2015 Elsevier B.V.保留所有权利。

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