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Feedback and rotational stabilization of resistive wall modes in ITER

Yueqiang Liu, A. Bondeson, M.S. Chu, J.-Y. Favez, Y. Gribov, M. Gryaznevich, T.C. Hender, D.F. Howell, R.J. La Haye, J.B. Lister2005年被引用 61Nuclear FusionIF 3出版社

Different models have been introduced in the stability code MARS-F in order to study the damping effect on resistive wall modes (RWM) in rotating plasmas. Benchmarks of MARS-F calculations with RWM experiments on JET and DIII-D indicate that the semi-kinetic damping model is a good candidate for explaining the damping mechanisms. Based on these results, the critical rotation speeds required for RWM stabilization in advanced ITER scenarios are predicted. Active feedback control of the n = 1 RWM in ITER is also studied using the MARS-F code.

日本語訳

回転プラズマにおける抵抗性壁モード(RWM)の減衰効果を研究するために、異なるモデルが安定性コードMARS-Fに導入されてきた。JETおよびDIII-DにおけるRWM実験とMARS-F計算のベンチマークは、半運動論的減衰モデルが減衰メカニズムを説明するための有力な候補であることを示している。これらの結果に基づき、先進的なITERシナリオにおけるRWM安定化に必要な臨界回転速度が予測される。ITERにおけるn = 1 RWMの能動フィードバック制御も、MARS-Fコードを用いて研究されている。

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iter高精度(タイトル一致)diii-d低精度(概要文一致)jet低精度(概要文一致)

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ITERResistive wall mode
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