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Effect of resonant magnetic perturbations on low collisionality discharges in MAST and a comparison with ASDEX Upgrade

A. Kirk, W. Suttrop, I.T. Chapman, Yueqiang Liu, R. Scannell, A.J. Thornton, L. Barrera Orte, P. Cahyna, T. Eich, R. Fischer2015年被引用 87Nuclear FusionIF 3出版社

Sustained edge localized mode (ELM) mitigation has been achieved on MAST and AUG using resonant magnetic perturbations (RMPs) with various toroidal mode numbers over a wide range of low to medium collisionality discharges. The ELM energy loss and peak heat loads at the divertor targets have been reduced. The ELM mitigation phase is typically associated with a drop in plasma density and overall stored energy. In one particular scenario on MAST, by carefully adjusting the fuelling it has been possible to counteract the drop in density and to produce plasmas with mitigated ELMs, reduced peak divertor heat flux and with minimal degradation in pedestal height and confined energy. While the applied resonant magnetic perturbation field can be a good indicator for the onset of ELM mitigation on MAST and AUG there are some cases where this is not the case and which clearly emphasize the need to take into account the plasma response to the applied perturbations. The plasma response calculations show that the increase in ELM frequency is correlated with the size of the edge peeling-tearing like response of the plasma and the distortions of the plasma boundary in the X-point region. In many cases the RMPs act to increase the frequency of type I ELMs, however, there are examples where the type I ELMs are suppressed and there is a transition to a small or type IV ELM-ing regime.

日本語訳

MASTとAUGにおいて、低〜中コリジョナリティ放電の広い範囲にわたって、様々なトロイダルモード数を持つ共鳴磁場摂動(RMP)を用いて、持続的な周辺部局在モード(ELM)緩和が達成された。ELMエネルギー損失とダイバータ標的でのピーク熱負荷が低減された。ELM緩和位相は典型的には、プラズマ密度と全蓄積エネルギーの低下を伴う。MASTのある特定のシナリオでは、燃料供給を注意深く調整することにより、密度の低下を相殺し、ELMが緩和され、ピークダイバータ熱流束が低減され、ペデスタル高さと閉じ込めエネルギーの劣化が最小限に抑えられたプラズマを生成することが可能であった。印加された共鳴磁場摂動はMASTとAUGにおけるELM緩和の開始の良い指標となり得るが、そうでない場合もあり、印加された摂動に対するプラズマ応答を考慮する必要性を明確に強調している。プラズマ応答計算は、ELM周波数の増加が、プラズマの周辺ピーリング・ティアリング的応答の大きさとX点領域におけるプラズマ境界の歪みと相関していることを示している。多くの場合、RMPはタイプI ELMの周波数を増加させるように作用するが、タイプI ELMが抑制され、小型またはタイプIV ELM発生領域への遷移が見られる例もある。

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asdex-upgrade高精度(タイトル一致)mast高精度(タイトル一致)

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ASDEXASDEX UpgradeMagnetic perturbationResonant magnetic perturbationMASTCollisionality
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