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Nonlinear dynamical modeling of solar cycles using dynamo formulation with turbulent magnetic helicity

机译:使用具有湍动磁螺旋的发电机公式对太阳周期进行非线性动力学建模

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摘要

Variations of the sunspot number are important indicators of the solar activity cycles. The sunspot formation is a result of a dynamo process inside the Sun, which is far from being understood. We use simple dynamical models of the dynamo process to simulate the magnetic field evolution and investigate general properties of the sunspot number variations during the solar cycles. We have found that the classical Parker's model in this formulation with a standard kinetic helicity quenching cannot represent the typical profiles of the solar cycle variations of the sunspot number, and also does not give chaotic solutions. For modeling of the solar cycle properties we use a nonlinear dynamo model of Kleeorin and Ruzmaikin (Dynamics of the mean turbulent helicity in magnetic field. Magnetohydrodynamics, 198216. Kleeorin , NI and Ruzmaikin , AA . 1982 . Dynamics of the mean turbulent helicity in magnetic field . Magnetohydrodynamics , 18 : 116 - 122 . View all references, 18, 116-122), which takes into account the dynamics of the turbulent magnetic helicity. We have obtained a series of periodic and chaotic solutions for different layers of the convective zone. The solutions qualitatively reproduce some basic observational features of the solar cycle properties, in particular, the relationship between the growth time and the cycle amplitude. Also, on the longer time scale the dynamo model with the magnetic helicity has intermittent solutions, which may be important for modeling long-term variations of the solar cycles.
机译:太阳黑子数的变化是太阳活动周期的重要指标。太阳黑子的形成是太阳内部的动力学过程的结果,这是人们尚不了解的。我们使用发电机过程的简单动力学模型来模拟磁场演化,并研究太阳周期中黑子数变化的一般性质。我们已经发现,具有标准动力学螺旋淬灭的这种经典派克模型不能代表太阳黑子数太阳周期变化的典型曲线,也不能给出混沌解。为了模拟太阳周期特性,我们使用Kleeorin和Ruzmaikin的非线性发电机模型(磁场中平均湍流螺旋度的动力学。磁流体动力学,198216。Kleeorin,NI和Ruzmaikin,AA.1982)。磁流体动力学,18:116-122。查看所有参考文献,18,116-122),其中考虑了湍流磁螺旋的动力学。我们获得了对流区不同层的一系列周期解和混沌解。这些解决方案定性地再现了太阳周期特性的一些基本观察特征,特别是生长时间和周期振幅之间的关系。同样,在较长的时间尺度上,具有磁螺旋的发电机模型具有间歇性解,这对于模拟太阳周期的长期变化可能很重要。

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  • 来源
    《Geophysical & Astrophysical Fluid Dynamics》 |2009年第1期|p.53-68|共16页
  • 作者

    I. N. Kitiashvili;

  • 作者单位

    Center for Turbulence Research, Stanford University, Stanford, CA, USA;

    W.W. Hansen Experimental Physics Laboratory, Stanford University, Stanford, CA, USA;

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  • 正文语种 eng
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