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Plasma column instabilities in a reversed field pinch without a shell.

机译:在没有外壳的情况下,反向磁场中的等离子柱不稳定。

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摘要

Plasma column instabilities in a Reversed Field Pinch (RFP) without a shell were investigated in the Colorado Reversatron RFP. The Reversatron RFP (aspect ratio R/a = 50cm/8cm) is a toroidal plasma containment device consisting of a vacuum chamber, a thick conducting shell, modular shells, magnetic field producing coils and diagnostics to characterize the plasma. RFP discharges were set up in the Reversatron in three different experimental configurations: with a thick conducting shell, with a modular shell and with no shell. In two of the configurations, a shell enclosed the plasma column to provide some plasma stability. A vertical magnetic field provided equilibrium in experiments without a shell. Data from discharges without a shell indicated that the plasma duration was greatly reduced and the plasma resistance increased compared to the discharges with a thick shell. Plasma position probes indicated large plasma centriod displacements corresponding to a n = 1 and a n = 3 kink coincident with the peak of the plasma current and the start of a discharge termination phase. The modular shell lengthened the discharge duration and lowered the plasma resistance to values intermediate between the plasma with a thick shell and the plasma with no shell. The modular shell suppressed the large plasma column displacements observed in the RFP plasma without a shell.
机译:在科罗拉多州的Reversatron RFP中研究了无壳的反向场收缩(RFP)中的等离子体柱不稳定性。 Reversatron RFP(长宽比R / a = 50cm / 8cm)是一种环形等离子体密封装置,由真空腔室,厚导电壳,模块化壳体,产生磁场的线圈和用于表征等离子体的诊断程序组成。在Reversatron中以三种不同的实验配置设置了RFP放电:具有厚的导电外壳,模块化的外壳和无外壳。在两种配置中,外壳封闭了等离子体柱,以提供一定的等离子体稳定性。垂直磁场在没有壳的实验中提供了平衡。来自没有壳的放电的数据表明,与具有厚壳的放电相比,等离子体的持续时间大大缩短,等离子体电阻增加。等离子体位置探测器显示出较大的等离子体中心位移,对应于n = 1和n = 3扭结,与等离子体电流的峰值和放电终止阶段的开始相吻合。模块化外壳延长了放电持续时间,并将等离子体电阻降低到外壳较厚的等离子体与没有外壳的等离子体之间的中间值。模块化外壳抑制了在没有外壳的R​​FP等离子体中观察到的较大的等离子体柱位移。

著录项

  • 作者

    Schmid, Peter Giles.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Plasma physics.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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