M2 tides have been successfully detected by'/> On the modelling of M2 tidal magnetic signatures: effects of physical approximations and numerical resolution
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On the modelling of M2 tidal magnetic signatures: effects of physical approximations and numerical resolution

机译:关于M2潮汐磁特征的建模:物理近似和数值分辨率的影响

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摘要

The magnetic signatures of ocean M2 tides have been successfully detected by the low-orbit satellite missions CHAMP and Swarm. They have been also used to constrain the electrical conductivity in the uppermost regions of the Earth’s mantle. Here, we concentrate on the problem of accurate numerical modelling of tidally induced magnetic field, using two different three-dimensional approaches: the contraction integral equation method and the spherical harmonic-finite element method. In particular, we discuss the effects of numerical resolution, self-induction, the galvanic and inductive coupling between the oceans and the underlying mantle. We also study the applicability of a simplified two-dimensional approximation, where the ocean is approximated by a single layer with vertically averaged conductivity and tidal forcing. We demonstrate that the two-dimensional approach is sufficient to predict the large-scale tidal signals observable on the satellite altitude. However, for accurate predictions of M2 tidal signals in the areas with significant variations of bathymetry, and close to the coastlines, full three-dimensional calculations are required. The ocean–mantle electromagnetic coupling has to be treated in the full complexity, including the toroidal magnetic field generated by the vertical currents flowing from and into the mantle.
机译:海洋 M 的磁签名低轨道卫星任务CHAMP和Swarm已成功检测到 2 潮汐。它们还被用来限制地球地幔最上层区域的电导率。在这里,我们集中于潮汐感应磁场的精确数值建模问题,它使用两种不同的三维方法:收缩积分方程法和球谐有限元法。特别是,我们讨论了数值分辨率,自我归纳,海洋与底层地幔之间的电流和归纳耦合的影响。我们还研究了简化的二维近似方法的适用性,在该方法中,海洋被具有垂直平均电导率和潮汐强迫的单层近似。我们证明了二维方法足以预测在卫星高度上可观测到的大规模潮汐信号。但是,对于 M 2 潮汐信号需要进行全三维计算。海洋-地幔电磁耦合必须被完全复杂地处理,包括从地幔中流入和流入地幔的垂直电流产生的环形磁场。

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