Kinematic Dynamo Model of a Solar Magnetic Cycle

IF 0.6 Q4 PHYSICS, MULTIDISCIPLINARY
O.O. Loginov, O. Cheremnykh, V. Krivodubskij, Y. Selivanov
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引用次数: 1

Abstract

The paper deals with the problem of explaining the origin and nature of the space-time variations in the magnetic activity of the Sun. It presents a new hydrodynamic model of the solar magnetic cycle, which uses helioseismological data on the differential rotation of the solar convective zone. The model is based on the hypothesis of the emergence of global flows as a result of the loss of stability of a differentially rotating plasma layer in the convective zone. First, the hydrodynamic global plasma flows are calculated without accounting for the effect of a magnetic field on them. Under this condition, it is shown that the solutions found describe all global flows observed on the surface of the Sun: permanent meridional circulation from the equator to the poles, torsional oscillations and space-time variations of the meridional flow. We conclude that the last two flows are azimuthal and meridional components of a single three-dimensional global hydrodynamic flow. Second, to simulate the dynamics of the magnetic field, the found velocities of global migrating flows and the spatial profile of the angular velocity of the internal differential rotation of the solar convective zone obtained from helioseismic measurements were used. Good coincidences have been obtained between the characteristics of the calculated dynamics of global migrating flows and the variable global magnetic fields generated by them with the observed values on the solar surface. An explanation is given for some phenomena on the surface of the Sun, which could not be explained within the framework of the available models.
一个太阳磁周期的动态发电机模型
本文讨论了解释太阳磁活动时空变化的起源和性质的问题。它提出了一个新的太阳磁循环流体动力学模型,该模型利用了太阳对流带微分旋转的太阳地震学数据。该模型基于这样一种假设,即由于对流区中差异旋转等离子体层失去稳定性,导致全球流动的出现。首先,在不考虑磁场影响的情况下计算流体动力学全局等离子体流。在这种情况下,发现的解描述了在太阳表面观测到的所有全球流动:从赤道到两极的永久经向环流、扭转振荡和经向流动的时空变化。我们得出结论,最后两个流是单个三维全球流体动力流的方位角和经向分量。其次,为了模拟磁场的动力学,使用了从太阳地震测量中获得的全球迁移流的速度和太阳对流带内部微分旋转角速度的空间分布。计算的全球迁移流动力学特征及其产生的可变全球磁场与太阳表面观测值之间取得了良好的一致性。对太阳表面的一些现象给出了解释,这些现象在现有模型的框架内是无法解释的。
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来源期刊
Ukrainian Journal of Physics
Ukrainian Journal of Physics PHYSICS, MULTIDISCIPLINARY-
CiteScore
1.20
自引率
20.00%
发文量
244
期刊介绍: Ukrainian Journal of Physics is the general physics edition of the Department of Physics and Astronomy of the National Academy of Sciences of Ukraine. The journal publishes original papers and reviews in the fields of experimental and theoretical physics.
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