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Non-linear modeling of the plasma response to RMPs in ASDEX Upgrade

F. Orain, M. Hölzl, E. Viezzer, M. Dunne, M. Bécoulet, P. Cahyna, G.T.A. Huijsmans, J. Morales, M. Willensdorfer, W. Suttrop2017年被引用 57Nuclear FusionIF 3出版社

The plasma response to resonant magnetic perturbations (RMPs) in ASDEX Upgrade is modeled with the non-linear resistive MHD code JOREK, using input profiles that match those of the experiments as closely as possible. The RMP configuration for which edge localized modes are best mitigated in experiments is related to the largest edge kink response observed near the X-point in modeling. On the edge resonant surfaces q  =  m/n, the coupling between the kink component (m  >  nq) and the m resonant component is found to induce the amplification of the resonant magnetic perturbation. The ergodicity and the 3D-displacement near the X-point induced by the resonant amplification can only partly explain the density pumpout observed in experiments.

日本語訳

ASDEX Upgradeにおける共鳴磁場摂動(RMP)に対するプラズマ応答は、実験の入力プロファイルに可能な限り一致させた非線形抵抗性MHDコードJOREKを用いてモデル化される。実験において周辺局在モードが最も緩和されるRMP配位は、モデリングにおいてX点近傍で観測される最大の周辺キンク応答に関連している。周辺共鳴面q  =  m/nでは、キンク成分(m  >  nq)とm共鳴成分との結合が共鳴磁場摂動の増幅を誘起することが見出される。共鳴増幅によって誘起されるX点近傍のエルゴード性と3D変位は、実験で観測される密度ポンプアウトを部分的にしか説明できない。

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