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Modelling of energetic particle drive and damping effects on TAEs in AUG experiment with ECCD

R. Calado, F. Nabais, S.E. Sharapov, P. Schneider, Ye. Kazakov, M. Garcia-Muñoz, A. Snicker, J. Ferreira, R. Coelho, M. Dreval2024年Nuclear FusionIF 3出版社

The impact of electron cyclotron current drive (ECCD)-driven current on toroidicity-induced Alfvén eigenmodes (TAEs) in experiments on the AUG tokamak is investigated numerically. The dynamical evolution of the plasma profiles and equilibria are modelled with European transport solver, while ion cyclotron resonance heating-accelerated H-minority ions exciting TAEs are assessed with the PION code. TAEs, their drive and damping are computed with the codes CASTOR and CASTOR-K. In the set of discharges analysed, two groups of TAEs are observed, differing in frequency and radial location. Experimental observations show that when counter-ECCD is applied the higher frequency group of approximately 150 kHz is suppressed, while the lower frequency modes of 125 kHz are amplified. When co-ECCD is applied, depending on the location of the ECCD current deposition layer, both groups of TAE can be suppressed. Numerical calculations of energetic particle drive and thermal plasma damping show that neither one effect could explain the variety of the experimental observations. The fine balance between the drive, sensitive to the TAE position, and the radiative and continuum damping effects could only explain the experiment if the effects are considered all together.

日本語訳

AUGトカマクの実験における、電子サイクロトロン電流駆動(ECCD)による駆動電流がトロイダル性誘起アルヴェン固有モード(TAE)に及ぼす影響を数値的に調査した。プラズマ分布と平衡の動的発展はEuropean Transport Solverを用いてモデル化し、TAEを励起するイオンサイクロトロン共鳴加熱で加速されたHマイノリティイオンはPIONコードで評価した。TAE、その駆動および減衰は、コードCASTORおよびCASTOR-Kを用いて計算した。解析した一連の放電において、周波数と半径方向位置が異なる2つのTAE群が観測された。実験観測によると、カウンターECCDを印加すると、約150 kHzの高周波数群は抑制される一方、125 kHzの低周波数モードは増幅される。コECCDを印加すると、ECCD電流の沈着層の位置に応じて、両方のTAE群が抑制され得る。高エネルギー粒子駆動と熱プラズマ減衰の数値計算により、どちらの効果単独でも実験観測の多様性を説明できないことが示された。TAEの位置に敏感な駆動と、放射減衰および連続減衰効果との間の微妙なバランスは、それらの効果をすべて一緒に考慮した場合にのみ実験を説明できる。

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Energetic particlesElectron cyclotron current drive
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