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Modelling plasma response to RMP fields in ASDEX Upgrade with varying edge safety factor and triangularity

L. Li, Y.Q. Liu, A. Kirk, N. Wang, Y. Liang, D. Ryan, W. Suttrop, M. Dunne, R. Fischer, J.C. Fuchs2016年被引用 32Nuclear FusionIF 3出版社

Toroidal computations are performed using the MARS-F code (Liu et al 2000 Phys. Plasmas7 3681), in order to understand correlations between the plasma response and the observed mitigation of the edge localized modes (ELM) using resonant magnetic perturbation fields in ASDEX Upgrade. In particular, systematic numerical scans of the edge safety factor reveal that the amplitude of the resonant poloidal harmonic of the response radial magnetic field near the plasma edge, as well as the plasma radial displacement near the X-point, can serve as good indicators for predicting the optimal toroidal phasing between the upper and lower rows of coils in ASDEX Upgrade. The optimal coil phasing scales roughly linearly with the edge safety factor , for various choices of the toroidal mode number n  =  1–4 of the coil configuration. The optimal coil phasing is also predicted to vary with the upper triangularity of the plasma shape in ASDEX Upgrade. Furthermore, multiple resonance effects of the plasma response, with continuously varying , are computationally observed and investigated.

日本語訳

MARS-Fコード(Phys. Plasmas7 3681、2000年)を使用してトロイダル計算を実行し、ASDEX Upgradeにおけるプラズマ応答と、共鳴磁場摂動を用いた周辺局在化モード(ELM)の抑制との相関を理解する。特に、エッジ安全係数の系統的な数値スキャンにより、プラズマ端付近での応答動径磁場の共鳴ポロイダル高調波の振幅と、X点付近でのプラズマ動径変位が、ASDEX Upgradeの上部および下部コイル列間の最適なトロイダル位相を予測するための優れた指標となり得ることが明らかになった。最適なコイル位相は、コイル配置のトロイダルモード数n = 1–4の様々な選択に対して、エッジ安全係数とほぼ線形にスケーリングする。最適なコイル位相は、ASDEX Upgradeにおけるプラズマ形状の上部三角形度によっても変化すると予測される。さらに、連続的に変化するプラズマ応答の多重共鳴効果が計算上観察され、調査された。

装置

asdex-upgrade高精度(タイトル一致)

wiki

ASDEXASDEX UpgradeResonant magnetic perturbationTriangularitySafety factor
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