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Relaxed Plasma State in Compact Tori

机译:紧凑型花托中的松弛等离子体状态

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摘要

Ever since J. B. Taylor (Phys Rev Lett 33:1139, 1974) published his theory with a model to derive the Taylor state ▽ × B = μB and to explain the reversed field pinch and spheromak configuration, magnetic helicity has been believed to play an important role as a global invariant in the process of self-organization and relaxation for magnetized plasmas. In the present work, the lowest eigenvalues μ_(min), which associated with relaxed force-free compact toroidal plasma devices are calculated numerically. We prove the applicability of the collocation method through out a developed numerical programme to investigate such task. We calculate μ_(min) for toroidal compact tori (CT) with arbitrary cross-sections and aspect ratios approaches to unity (α = R/a → 1, R and a are the major and some sort of minor radius respectively). For a perfect conducting CT wall, we were able to obtain new results concerning satisfaction of the toroidal flux vanishing boundary condition B n = 0. Besides, the magnetic field topology inside the CT are well represented. The plots showed a good fulfilment of the boundary condition along the whole boundaries of different cross sections. Dependence of μ on the aspect ratio is also obtained. Several runs of the programme for various wave numbers k showed that μa is very insensitive to the choice of k.
机译:自从JB Taylor(1974年Phys Rev Lett 33:1139)发表他的理论并用模型推导泰勒状态▽×B =μB并解释了反向场收缩和球状构型以来,就一直认为磁螺旋起着重要的作用。在磁化等离子体的自组织和弛豫过程中作为全局不变量起作用。在当前工作中,通过数值计算与松弛的无力紧凑型环形等离子体设备关联的最低特征值μ_(min)。我们通过开发一个数值程序来证明这种方法的适用性,以研究此类任务。我们计算具有任意横截面和纵横比接近统一的环形紧凑型托里(CT)的μ_(min)(α= R / a→1,R和a分别是主要半径和某种次要半径)。对于理想的导电CT壁,我们能够获得有关满足环形磁通消失边界条件B n = 0的新结果。此外,CT内部的磁场拓扑也得到了很好的表示。该图显示了沿不同横截面的整个边界的边界条件的良好满足。还获得了μ与纵横比的依赖关系。该程序针对各种波数k的多次运行表明,μa对k的选择非常不敏感。

著录项

  • 来源
    《Journal of Fusion Energy》 |2009年第3期|275-281|共7页
  • 作者

    Sh. M. Khalil; R. A. Altuijri;

  • 作者单位

    Girls Education College, Scientific Divisions, Physics Department, Riyadh University for Women, P.O. Box 27104, Riyadh 11417, Saudi Arabia;

    Girls Education College, Scientific Divisions, Physics Department, Riyadh University for Women, P.O. Box 27104, Riyadh 11417, Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:41:53

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