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Analysis of performance degradation in an electron heating dominant H-mode plasma after ECRH termination in EAST

Hongfei Du, Siye Ding, Jiale Chen, Yifeng Wang, Hui Lian, Guosheng Xu, Xuemei Zhai, Haiqing Liu, Qing Zang, Bo Lyu2018年被引用 23Nuclear FusionIF 3出版社

In recent EAST experiments, significant performance degradation accompanied by a decrease of internal inductance is observed in an electron heating dominant H-mode plasma after the electron cyclotron resonance heating termination. The lower hybrid wave (LHW) deposition and effective electron heat diffusivity are calculated to explain this phenomenon. Analysis shows that the changes of LHW heating deposition rather than the increase of transport are responsible for the significant decrease in energy confinement (). The reason why the confinement degradation occurred on a long time scale could be attributed to both good local energy confinement in the core and also the dependence of LHW deposition on the magnetic shear. The electron temperature profile shows weaker stiffness in near axis region where electron heating is dominant, compared to that in large radius region. Unstable electron modes from low to high k in the core plasma have been calculated in the linear GYRO simulations, which qualitatively agree with the experimental observation. This understanding of the plasma performance degradation mechanism will help to find ways of improving the global confinement in the radio-frequency dominant scenario in EAST.

日本語訳

最近のEAST実験において、電子サイクロトロン共鳴加熱終了後、電子加熱が支配的なHモードプラズマ中で、内部インダクタンスの減少を伴う顕著な性能劣化が観測されている。この現象を説明するために、低域混成波(LHW)の堆積と有効電子熱拡散係数が計算された。解析により、エネルギー閉じ込め()の顕著な低下には、輸送の増加ではなくLHW加熱堆積の変化が原因であることが示されている。閉じ込め劣化が長い時間スケールで発生した理由は、コアにおける良好な局所エネルギー閉じ込めと、磁気シアに対するLHW堆積の依存性の両方に起因する可能性がある。電子温度分布は、電子加熱が支配的な軸近傍領域では、大半径領域と比較して弱い剛性を示す。コアプラズマ中の低kから高kまでの不安定電子モードが線形GYROシミュレーションで計算されており、実験観測と定性的に一致している。プラズマ性能劣化メカニズムのこの理解は、EASTにおける高周波支配シナリオでの全体閉じ込めを改善する方法を見つけるのに役立つだろう。

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east高精度(タイトル一致)

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EASTH-modeElectron cyclotron heatingElectron heating
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