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Penetration of Alfvén waves into an upper stably-stratified layer excited by magnetoconvection in rotating spherical shells

机译:Alfvén波在旋转球形壳中的磁对流作用下渗透到稳定层上部

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摘要

The penetration of magneto-hydrodynamic (MHD) disturbances into an upper strongly stratified stable layer excited by magnetoconvection in rotating spherical shells is investigated. An analytic expression for the penetration distance is derived by considering perturbations of a stably stratified rotating MHD Boussinesq fluid in a semi-infinite region, with the rotation axis and a uniform magnetic field tilted relative to the gravity axis. Solutions for the response to MHD disturbances applied at the bottom boundary show that the disturbances propagate as Alfvén waves in the stable layer. Their propagation distance is proportional to the Alfvén wave speed and inversely proportion to both the arithmetic average of viscosity and magnetic diffusion and the total wavenumber of the disturbance. The derived expression for penetration distance is in good agreement with the numerical results for neutral convection in a rotating spherical shell with an upper stably stratified layer embedded in an axially uniform basic magnetic field.
机译:研究了磁流体动力学(MHD)扰动在旋转球形壳中由磁对流激发的上层强分层稳定层中的渗透。通过考虑半无限区域中稳定分层的旋转MHD Boussinesq流体的扰动,得出旋转距离的解析表达式,其中旋转轴和均匀的磁场相对于重力轴倾斜。对应用于底部边界的MHD扰动的响应的解决方案表明,扰动在稳定层中以Alfvén波的形式传播。它们的传播距离与Alfvén波速成正比,与粘度和磁扩散的算术平均值以及干扰的总波数成反比。穿透距离的推导表达式与旋转球壳中的中性对流的数值结果非常吻合,球形壳中有一个稳定的上分层层嵌入了轴向均匀的基本磁场中。

著录项

  • 作者

    Takehiro Shin-ichi;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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