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EFFECTS OF PENETRATIVE CONVECTION ON SOLAR DYNAMO

机译:穿透对流对太阳能的影响

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Spherical solar dynamo simulations are performed. A self-consistent, fully compressible magnetohydrodynamic system with a stably stratified layer below the convective envelope is numerically solved with a newly developed simulation code based on the Yin-Yang grid. The effects of penetrative convection are studied by comparing two models with and without the stable layer. The differential rotation profile in both models is reasonably solar-like with equatorial acceleration. When considering the penetrative convection, a tachocline-like shear layer is developed and maintained beneath the convection zone without assuming any forcing. While the turbulent magnetic field becomes predominant in the region where the convective motion is vigorous, mean-field components are preferentially organized in the region where the convective motion is less vigorous. Particularly in the stable layer, the strong, large-scale field with a dipole symmetry is spontaneously built up. The polarity reversal of the mean-field component takes place globally and synchronously throughout the system regardless of the presence of the stable layer. Our results suggest that the stably stratified layer is a key component for organizing the large-scale strong magnetic field, but is not essential for the polarity reversal.
机译:进行球形太阳发电机仿真。利用基于阴阳网格的新开发的模拟代码,数值求解了一个自洽的,完全可压缩的磁流体动力学系统,该系统在对流包层下方具有稳定的分层层。通过比较带有和不带有稳定层的两个模型,研究了穿透对流的影响。两种模型中的旋转差曲线在一定程度上类似于太阳,具有赤道加速度。在考虑穿透对流时,在不施加任何强迫的情况下,会在对流区下方形成并保持一条速球状剪切层并将其保持。尽管在对流运动剧烈的区域中湍流磁场占主导地位,但在对流运动较弱的区域中优先组织平均场分量。特别是在稳定层中,会自发建立具有偶极子对称性的强大尺度场。不管是否存在稳定层,均场分量的极性反转都会在整个系统中全局且同步发生。我们的结果表明,稳定的分层层是组织大规模强磁场的关键组成部分,但对于极性反转不是必需的。

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