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Influence of magnetic field configuration on magnetohydrodynamic waves in Earth's core

机译:磁场配置对地球核心磁水动力波的影响

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摘要

We develop a numerical model to study magnetohydrodynamic waves in a thin layer of stratified fluid near the surface of Earth's core. Past studies have been limited to using simple background magnetic field configurations. However, the choice of field distribution can dramatically affect the structure and frequency of the waves. To permit a more general treatment of background magnetic field and layer stratification, we combine finite volume and Fourier methods to describe the wave motions. We validate our model by comparisons to previous studies and examine the influence of background magnetic field configuration on two types of magnetohydrodynamic waves. We show that the structure of zonal Magnetic-Archimedes-Coriolis (MAC) waves for a dipole background field is unstable to small perturbations of the field strength in the equatorial region. Modifications to the wave structures are computed for a range of field configurations. In addition, we show that non-zonal MAC waves are trapped near the equator for realistic magnetic field distributions, and that their latitudinal extent depends upon the distribution of magnetic field strength at the CMB.
机译:我们开发了一个数值模型,用于研究磁性动力学波在地球核心表面附近的分层流体薄层中。过去的研究仅限于使用简单的背景磁场配置。然而,场分布的选择可以显着影响波的结构和频率。为了允许更一般的背景磁场和层分层,我们将有限体积和傅立叶方法组合来描述波动运动。我们通过比较对先前的研究来验证我们的模型,并检查背景磁场配置对两种类型的磁性流动波浪的影响。我们表明,偶极背景场的区间磁性archimedes-coriolis(Mac)波的结构对于赤道区域中的场强的小扰动不稳定。对波形结构的修改被计算为一系列现场配置。此外,我们表明非Zonal MAC波被捕获到赤道附近以实现现实磁场分布,并且它们的纬度程度取决于CMB处的磁场强度的分布。

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