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Effect of the toroidal flow shear on the m/n = 2/1 tearing mode by using the rotating resonant magnetic perturbations in the J-TEXT Tokamak

Ruo Jia, Da Li, Yonghua Ding, Zhengkang Ren, Nengchao Wang, Feiyue Mao, Ying He, the J-TEXT team2023年Plasma Physics and Controlled FusionIF 2.2出版社

It has been found that a higher-frequency rotating resonant magnetic perturbation (RRMP) can suppress a large tearing mode (TM) and avoid subsequent disruption (Li et al 2020 Nucl. Fusion60 056022). To clarify the mechanism of the stabilizing effect of the higher-frequency RRMP, experiments on the effects of RRMPs with different frequencies on the TM amplitude are presented in this paper. After eliminating the destabilizing effect of RRMP, the statistical analysis reveals a notable negative correlation between changes in the amplitude of the TM and changes in the mode frequency. Further investigation indicates an absence of a suppressive effect of the toroidal flow on the TM. Instead, the data shows a clear linear relationship between changes in the TM amplitude and the flow shear in proximity to the resonant surface, with a high coefficient of determination (r2). Those experimental results suggest that the flow shear plays a significant role in the suppression of TMs and offer a plausible method to prevent disruptions in future devices.

日本語訳

高周波の回転共鳴磁場摂動(RRMP)が大規模なテアリングモード(TM)を抑制し、その後のディスラプションを回避できることが見出された(Li et al 2020 Nucl. Fusion60 056022)。高周波RRMPの安定化メカニズムを解明するため、異なる周波数のRRMPがTM振幅に及ぼす影響に関する実験を本論文で提示する。RRMPの不安定化効果を除去した後、統計解析によりTM振幅の変化とモード周波数の変化との間に顕著な負の相関が明らかになった。さらに、トロイダル流のTMに対する抑制効果は認められなかった。その代わりに、TM振幅の変化と共鳴面近傍の流れのシアとの間に明確な線形関係が示され、高い決定係数(r²)が得られた。これらの実験結果は、流れのシアがTMの抑制に重要な役割を果たすことを示唆しており、将来の装置におけるディスラプション防止のための有力な手法を提供するものである。

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Tearing modeMagnetic perturbationResonant magnetic perturbationTEXTJ-TEXTFlow shearToroidal flow
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