Halo current, runaway electrons and disruption mitigation in ITER

Halo current, runaway electrons and disruption mitigation in ITER
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DOI:
10.1088/0741-3335/39/12b/013
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发表时间:
1997-12
影响因子:
2.2
通讯作者:
S. Putvinski;P. Barabaschi;N. Fujisawa;N. Putvinskaya;M. Rosenbluth;J. Wesley
S. Putvinski;P. Barabaschi;N. Fujisawa;N. Putvinskaya;M. Rosenbluth;J. Wesley
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
S. Putvinski;P. Barabaschi;N. Fujisawa;N. Putvinskaya;M. Rosenbluth;J. Wesley

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本文介绍了托卡马克中最新的破裂分析结果和ITER中的破裂预测。重点是在ITER的晕电流和它的环形不对称性,逃逸电子形成的研究和分析的概念,快速等离子体关闭杂质注入的预测。本文还讨论了基于大量氘注入的等离子体关闭的概念。
This paper presents the results of the latest analysis of disruption in tokamaks and the prediction of disruptions in ITER. The emphasis is on predictions of the halo current and its toroidal asymmetry in ITER, a study of runaway electron formation and an analysis of the concept for fast plasma shutdown by impurity injection. The concept of the plasma shutdown based on a massive injection of deuterium is also discussed.