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Large-Scale Properties of the Tilt of Sunspot Groups and Joy's Law Near the Solar Equator

机译:太阳能赤道附近的Sunspot团体和Joy的法律倾斜的大规模属性

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摘要

A physical mechanism is proposed for the formation of the tilt angle of groups of sunspots during the formation of active regions under the sun's photosphere. The phenomena associated with the influence of Coriolis forces on the large-scale flows in supergranular convection in turbulent media are studied in detail. Based on calculations of the magnetic field in a model of a solar nonlinear dynamo, the orders of magnitude of this effect are estimated and the tilt angle is estimated in the band of latitudes in the royal zone of sunspot activity. This dynamo model is based on the balance of small- and large-scale magnetic helicities, and describes the formation of sunspots over the last five activity cycles (since 1964) and has been adapted for a broader class of magnetic manifestations of solar activity. The variation in the average tilt over these five activity cycles has been plotted and latitude-time diagrams of the distribution of this value constructed which fully satisfy Joy's law and also show the local deviations from it within a limited range of latitudes in isolated phases of the solar cycle.
机译:建议在太阳照相机下的活动区域形成期间形成太阳黑子组的倾斜角度的物理机制。研究了与科里奥利力的影响相关的现象,详细地研究了湍流介质中的超级对流中的大规模流动。基于太阳能非线性发电机模型中的磁场的计算,估计了这种效果的级别,并且在太阳黑子活动的皇家区的纬度突出中估计了倾斜角度。该发电机模型基于小型和大规​​模磁螺旋的平衡,并描述了在过去五个活动周期(自1964年以来)上形成了太阳黑子,并且已经适用于太阳能活动的更广泛的磁性表现形式。已经绘制了这五个活动周期的平均倾斜的变化,并且绘制了这种值的分布的纬度时间图,该价值构建完全满足Joy的定律,并且还显示了与其中的局部偏差在隔离阶段的有限范围内太阳循环。

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