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Ideal plasma response to vacuum magnetic fields with resonant magnetic perturbations in non-axisymmetric tokamaks

Kimin Kim, J-W Ahn, F Scotti, J-K Park, J E Menard2015年Plasma Physics and Controlled FusionIF 2.2出版社

Ideal plasma shielding and amplification of resonant magnetic perturbations in non-axisymmetric tokamak is presented by field line tracing simulation with full ideal plasma response, compared to measurements of divertor lobe structures. Magnetic field line tracing simulations in NSTX with toroidal non-axisymmetry indicate the ideal plasma response can significantly shield/amplify and phase shift the vacuum resonant magnetic perturbations. Ideal plasma shielding for n   =   3 mode is found to prevent magnetic islands from opening as consistently shown in the field line connection length profile and magnetic footprints on the divertor target. It is also found that the ideal plasma shielding modifies the degree of stochasticity but does not change the overall helical lobe structures of the vacuum field for n   =   3. Amplification of vacuum fields by the ideal plasma response is predicted for low toroidal mode n   =   1, better reproducing measurements of strong striation of the field lines on the divertor plate in NSTX.

日本語訳

非軸対称トカマクにおける共鳴磁気摂動の理想プラズマ遮蔽と増幅を、完全な理想プラズマ応答を考慮した磁力線追跡シミュレーションにより提示し、ダイバータ・ローブ構造の測定結果と比較する。NSTXにおけるトロイダル非軸対称性を考慮した磁力線追跡シミュレーションは、理想プラズマ応答が真空共鳴磁気摂動を有意に遮蔽・増幅し、位相をシフトさせ得ることを示す。n = 3モードに対する理想プラズマ遮蔽は、磁力線接続長プロファイルとダイバータターゲット上の磁気フットプリントに一貫して示されるように、磁気島の形成を防ぐことが見出された。また、理想プラズマ遮蔽は、n = 3に対する真空場の確率性の程度を修正するが、全体的なヘリカル・ローブ構造は変化させないことも見出された。低トロイダルモードn = 1に対しては、理想プラズマ応答による真空場の増幅が予測され、NSTXのダイバータ板上の磁力線の強いストリエーションの測定結果をより良く再現する。

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nstx-u中精度(概要文一致)

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Magnetic perturbationResonant magnetic perturbation
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