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Nonlinear Evolution of 2d Tachocline Instabilities

机译:2d Tachocline不稳定性的非线性演化

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摘要

A spectral method is used to explore the nonlinear evolution of known linear instabilities in a 2D differentially rotating magneto-hydrodynamic shell, representing the solar tachocline. Several simulations are presented, with a range of outcomes for the magnetic field configuration. Most spectacularly, the `clam instability', which occurs for solar differential rotation and a strong broad toroidal magnetic field structure, results in the field tipping over by 90° and reconnecting. A common characteristic of all the simulations though is that the nonlinear instabilities produce a strong angular momentum mixing effect which pushes the rotation towards a solid body form. It is argued that this may be the mechanism required by the model of Spiegel and Zahn to limit the tachocline's thickness.
机译:光谱方法用于探索代表太阳速可控线的二维差分旋转磁流体动力壳中已知线性不稳定性的非线性演化。提出了几种模拟,并给出了磁场配置的一系列结果。最引人注目的是,“蛤in不稳定性”发生在太阳差速旋转和强大的宽环形磁场结构的作用下,导致磁场倾翻90°并重新连接。所有模拟的一个共同特征是,非线性不稳定性会产生强烈的角动量混合效应,从而将旋转推向固体形式。有人认为这可能是Spiegel和Zahn模型所要求的限制Tachocline厚度的机制。

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  • 来源
    《Solar Physics 》 |2001年第2期| 231-249| 共19页
  • 作者

    P.S. Cally;

  • 作者单位

    Department of Mathematics Statistics Monash University;

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  • 正文语种 eng
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