The toroidal magnetic field correction to reduce instabilities through current rise up phase in IR-T1 tokamak

M. Riazifar, S. Meshkani, H. Moghaddam, M. Ghoranneviss
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Abstract

Keeping the plasma stable throughout the plasma discharge is now considered a massive undertaking in today’s Tokamaks. In this study, the part that the current rise up phase plays in the total plasma stability was investigated, toroidal magnetic field on IR-T1 Tokamak was altered to reach the least amount of instabilities in current rise up phase. In this experiment, in order to provide rigorous and details affirmation, SVD, FFT and hard X-ray analyses were employed. The results state that with toroidal magnetic field increment to a specific amount (3.10 KV), the plasma experiences the least amount of Mirnov oscillations (almost 25%) and instabilities during current rise up phase.
IR-T1托卡马克中通过电流上升相位进行环向磁场校正以减少不稳定性
在今天的托卡马克中,在整个等离子体放电过程中保持等离子体稳定被认为是一项艰巨的任务。本文研究了电流上升相在等离子体总稳定性中的作用,改变了IR-T1托卡马克上的环向磁场,使电流上升相的不稳定性达到最小。本实验采用SVD、FFT、硬x射线分析等方法,对图像进行了严谨细致的确认。结果表明,当环向磁场增加到一定程度(3.10 KV)时,等离子体的米尔诺夫振荡最小(约25%),且在电流上升阶段不稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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