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Progress in the development of ELM pace-making with non-axisymmetric magnetic perturbations in NSTX

J.M. Canik, A.C. Sontag, R. Maingi, R. Bell, D.A. Gates, S.P. Gerhardt, H.W. Kugel, B.P. LeBlanc, J. Menard, S. Paul2010年被引用 17Nuclear FusionIF 3出版社

The application of non-axisymmetric magnetic perturbations has been shown to destabilize edge-localized modes (ELMs) in the National Spherical Torus Experiment. This ELM-triggering effect is used to controllably introduce ELMs into lithium-enhanced ELM-free H-mode discharges, reducing the typical impurity accumulation while maintaining high energy confinement. Recent improvements to the triggering techniques are described. The perturbation waveform has been improved, with large amplitude, short duration perturbations allowing rapid, highly reliable triggering, with reduced braking of toroidal rotation. The rapid triggering allowed the ELM frequency to be increased to over 60 Hz, leading to a reduction in the average ELM size. Combined with improved gas fuelling, this method has resulted in periods of stationary global conditions, although plasma profiles do continue to evolve.

日本語訳

非軸対称磁場摂動の印加は、National Spherical Torus Experimentにおいて周辺局在モード(ELM)を不安定化させることが示されている。このELMトリガー効果は、リチウム強化ELMフリーHモード放電にELMを制御可能な形で導入するために用いられ、典型的な不純物蓄積を低減しつつ、高いエネルギー閉じ込めを維持する。最近のトリガー技術の改善について述べる。摂動波形が改善され、大振幅・短時間の摂動により、トロイダル回転の減速を抑えつつ、高速で信頼性の高いトリガーが可能となった。高速トリガーによりELM周波数は60 Hz以上に増加し、ELMの平均的な大きさの低減がもたらされた。改善されたガス供給と組み合わせることで、この手法は定常的な全体条件の期間をもたらしたが、プラズマ分布は進化し続ける。

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Edge localized modeMagnetic perturbationNSTX
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