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首页> 外文期刊>The Astrophysical journal >EVOLUTION OF SOLAR MAGNETIC ARCADES. I. IDEAL MHD EVOLUTION UNDER FOOTPOINT SHEARING
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EVOLUTION OF SOLAR MAGNETIC ARCADES. I. IDEAL MHD EVOLUTION UNDER FOOTPOINT SHEARING

机译:太阳能磁CAD的演变。 I.切脚作用下理想的MHD演变

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摘要

The ideal MHD evolution of a single magnetic arcade undergoing footpoint motions in a two-dimensional Cartesian geometry is investigated using numerical simulation. Also, force-free states of the same arcade are constructed with the use of a magnetofrictional method, which is formulated differently from those used in previous studies. In MHD simulations, no instability or nonequilibrium is found to the value of shear 100 times as large as the footpoint separation in the potential field. The evolutionary sequence is composed of three distinct phases. The first phase is characterized by the increase of the toroidal field strength and the second phase by a sort of self-similar expansion. In the third phase, the formation and growth of a central current layer are conspicuous. With increasing shear, the maximum current density increases, the width of the current layer decreases, and the feet of the current layer, which bifurcates above the bottom boundary, get closer to each other. The field lines in the current layer tend to thread the bottom boundary nearly horizontally for a large shear. From our results, it is inductively inferred that the magnetic arcade in a two-dimensional Cartesian geometry approaches an open field as the shear increases indefinitely.
机译:使用数值模拟研究了在二维笛卡尔几何中经历脚点运动的单个磁拱的理想MHD演变。同样,使用电磁摩擦法构造同一拱廊的无力状态,其公式与以前的研究方法不同。在MHD模拟中,没有发现不稳定性或不平衡性,其剪切值是势场中脚点间距的100倍。进化序列由三个不同的阶段组成。第一阶段的特征是环形场强度的增加,第二阶段的特征是自相似的扩展。在第三阶段,中心电流层的形成和生长是明显的。随着剪切力的增加,最大电流密度增加,电流层的宽度减小,并且在底部边界上方分叉的电流层的底脚彼此靠近。当前层中的磁力线趋向于在较大剪切力的情况下几乎水平地将底部边界穿线。根据我们的结果,可以推断出,随着剪切力无限增加,二维笛卡尔几何形状的电磁场接近开放磁场。

著录项

  • 来源
    《The Astrophysical journal》 |1996年第1pt1期|p.360-371|共12页
  • 作者

    G. S. Choe; L. C. Lee;

  • 作者单位

    Princeton Plasma Physics Laboratory, Princeton University, P.O. Box 451, Princeton, NJ 08543;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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