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首页> 外文期刊>Nuclear fusion >A study on the effects of magnetohydrodynamic perturbations on nonthermal beam formation during the current decay phase of disruptions in the T-10 tokamak
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A study on the effects of magnetohydrodynamic perturbations on nonthermal beam formation during the current decay phase of disruptions in the T-10 tokamak

机译:T-10托卡马克扰动电流衰减阶段中磁流体动力扰动对非热束形成的影响研究

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摘要

Repetitive bursts of nonthermal (E_γ ~ 15 - 150keV) x-ray radiation are observed during the plasma current decay phase of the density limit disruptions in the T-10 tokamak. The repetition rate of the nonthermal bursts correlates with the current decay rate. Analysis indicates that the phenomena can be connected with the nonthermal electrons initiated during the abrupt growth of the magnetohydrodynamic (MHD) modes in the series of minor disruptions. Application of the electron cyclotron waves in the post energy quench plasma allows control of the bursting MHD modes and prevention of nonthermal beam formation. Phenomenological modelling indicates that prevention of the nonthermal beams can be connected with elimination of the electric fields induced during magnetic reconnection in the series of minor disruptions, and reduction of the 'equilibrium' longitudinal electric field during auxiliary plasma heating.
机译:在T-10托卡马克的密度极限破坏的等离子体电流衰减阶段,观察到重复的非热(E_γ〜15-150keV)X射线辐射。非热脉冲的重复率与电流衰减率相关。分析表明,该现象可以与一系列小破坏中磁流体动力学(MHD)模式突然增长期间引发的非热电子有关。电子回旋加速器波在能量骤冷后等离子体中的应用可以控制爆发的MHD模式并防止形成非热束。现象学模型表明,预防非热束可以与消除磁重连期间产生的一系列细微干扰产生的电场以及减少辅助等离子体加热过程中“平衡”纵向电场有关。

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