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Disruption-induced poloidal currents in the tokamak wall

机译:托卡马克壁中的破坏引起的极向电流

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The poloidal current induced in the tokamak wall during fast transient events is analytically evaluated. The analysis is based on the electromagnetic relations coupled with plasma equilibrium equations. The derived formulas describe the consequences of both thermal and current quenches. In the final form, they give explicit dependence of the wall current on the plasma pressure and current. A comparison with numerical results of Villone et al. [F. Villone, G. Ramogida, G. Rubinacci, Fusion Eng. Des. 93, 57 (2015)] for IGNITOR is performed. Our analysis confirms the importance of the effects described there. The estimates show that the disruption-induced poloidal currents in the wall should be necessarily taken into account in the studies of disruptions and disruption mitigation in ITER. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过分析评估在快速瞬态事件期间在托卡马克壁中感应的极向电流。该分析基于电磁关系和等离子体平衡方程。推导的公式描述了热和电流淬火的后果。在最终形式中,它们给出了壁电流对等离子压力和电流的明确依赖性。与Villone等人的数值结果进行比较。 [F。 Villone,G.Ramogida,G.Rubinacci,Fusion Eng。德斯93,57(2015)]执行。我们的分析证实了此处所述效果的重要性。估计表明,在ITER的干扰和干扰缓解研究中,必须考虑干扰源中的干扰电流。 (C)2017 Elsevier B.V.保留所有权利。

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