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Stability analysis of TJ-II stellarator NBI driven Alfvén eigenmodes in ECRH and ECCD experiments

Á. Cappa, J. Varela, D. López Bruna, E. Ascasíbar, M. Liniers, L.G. Eliseev, J.M. Fontdecaba, J.M. García-Regaña, A. González-Jerez, N.K. Kharchev2021年被引用 15Nuclear FusionIF 3出版社

In this paper, we analyze the impact of electron cyclotron resonance heating and electron cyclotron current drive on the Alfvénic instabilities driven by neutral beam injection observed in the TJ-II stellarator. An MHD stability analysis of driven Alfvén eigenmodes compatible with the experimental plasma parameters is carried out in order to compare with the data provided by magnetic coils, radiation monitors, and heavy ion beam probes. To this end, the vacuum magnetic configuration modified by the different levels of plasma current, the thermal plasma parameters and the fast ion pressure profiles generated by the co-injected neutral beam, are entered in the FAR3d gyro-fluid code in order to follow the linear evolution of the destabilized plasma equilibrium. Linear growth rates and radial location of the dominant predicted modes coincident in frequency with the observed fluctuations are presented. Despite the uncertainties related to the estimation of the rotational transform profile, the code predictions agree within reasonable accuracy with the experimental results.

日本語訳

本論文では、TJ-IIステラレーターにおいて中性粒子ビーム入射によって駆動されるアルフヴェン不安定性に対する、電子サイクロトロン共鳴加熱および電子サイクロトロン電流駆動の影響を分析する。実験プラズマパラメータと整合する駆動アルフヴェン固有モードのMHD安定性解析を実施し、磁気プローブ、放射モニター、重イオンビームプローブによって得られたデータと比較する。この目的のため、異なるレベルのプラズマ電流によって修正された真空磁気配位、熱プラズマパラメータ、および共入射中性粒子ビームによって生成される高速イオン圧力分布をFAR3dジャイロ流体コードに入力し、不安定化されたプラズマ平衡の線形成長を追跡する。観測された周波数と一致する支配的な予測モードの線形成長率と動径位置を示す。回転変換プロファイルの推定に関連する不確実性にもかかわらず、コードの予測は実験結果と合理的な精度で一致する。

装置

tj-ii高精度(タイトル一致)

wiki

Alfvén waveStellaratorNeutral beam injectionElectron cyclotron heatingAlfvén eigenmodeTJ-IIElectron cyclotron current drive
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