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首页> 外文期刊>The Astrophysical journal >DYNAMO ACTION IN THE SOLAR CONVECTION ZONE AND TACHOCLINE: PUMPING AND ORGANIZATION OF TOROIDAL FIELDS
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DYNAMO ACTION IN THE SOLAR CONVECTION ZONE AND TACHOCLINE: PUMPING AND ORGANIZATION OF TOROIDAL FIELDS

机译:太阳对流带和滑行带的动力作用:环面场的泵浦和组织

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摘要

We present the first results from three-dimensional spherical shell simulations of magnetic dynamo action realized by turbulent convection penetrating downward into a tachocline of rotational shear. This permits us to assess several dynamical elements believed to be crucial to the operation of the solar global dynamo, variously involving differential rotation resulting from convection, magnetic pumping, and amplification of fields by stretching within the tachocline. The simulations reveal that strong axisymmetric toroidal magnetic fields (about 3000 G in strength) are realized within the lower stable layer, unlike in the convection zone where fluctuating fields are predominant. The toroidal fields in the stable layer possess a striking persistent antisymmetric parity, with fields in the northern hemisphere largely of opposite polarity to those in the southern hemisphere. The associated mean poloidal magnetic fields there have a clear dipolar geometry, but we have not yet observed any distinctive reversals or latitudinal propagation. The presence of these deep magnetic fields appears to stabilize the sense of mean fields produced by vigorous dynamo action in the bulk of the convection zone.
机译:我们介绍了通过对流向下渗透到旋转切变的直线运动中实现的磁发电机作用的三维球壳模拟的第一个结果。这使我们能够评估被认为对全球太阳能发电机的运行至关重要的几个动力学要素,这些动力学要素涉及对流,磁力泵浦以及通过在行车线内伸展产生的磁场放大所引起的旋转差。仿真显示,在下部稳定层内实现了强轴对称环形磁场(强度约为3000 G),这与以波动磁场为主的对流区不同。稳定层中的环形场具有惊人的持久性反对称奇偶性,北半球的场与南半球的场极性相反。那里的相关平均极向磁场具有清晰的偶极几何形状,但我们尚未观察到任何明显的逆转或纬向传播。这些深磁场的出现似乎稳定了对流区大部分中剧烈的发电机作用所产生的平均场的感觉。

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