FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Integration of LHCD and IBW heating for high-performance discharges under steady-state operation in the HT-7 tokamak

Baonian Wan, JiangangLi for HT-7 Team2003年被引用 18Nuclear FusionIF 3出版社

Significant progress in obtaining high-performance discharges under quasi-steady-states in the HT-7 superconducting tokamak has been realized since the last IAEA meeting. In relation to the previous experiments, various features of the non-inductive current driven, heating, profile control, MHD stabilization and edge physics are integrated and optimized to achieve steady-state high-performance discharges. Both on-axis and off-axis electron heating with global peaked and locally steepened electron pressure profiles were realized with improved confinement if the ion Bernstein wave (IBW) resonant layer was properly selected. Stabilization of MHD instabilities was demonstrated by off-axis IBW heating. The internal transport barrier structure was formed by off-axis lower hybrid current drive (LHCD). Long-pulse discharges with Te ∼ 1 keV and central density ∼1 × 1019 m−3 were obtained with a duration of 10–20 s. A combination of IBW heating and LHCD produced a broadened current density profile, which may be a signature of the synergy effect between two waves. Experimental results show that features of IBW in controlling electron pressure profile can be integrated into LHCD target plasmas. HT-7 has produced a variety of discharges with βN × H89 > 1–4 for durations of several to several tens of energy confinement times with a non-inductive driven current of 50–80% by optimizing the IBW heating and LHCD and avoiding MHD activities.

日本語訳

前回のIAEA会合以降、HT-7超伝導トカマクにおいて準定常状態での高性能放電の達成において顕著な進展があった。前回の実験に関連して、非誘導電流駆動、加熱、分布制御、MHD安定化、および周辺物理の様々な特徴が、定常高性能放電を達成するために統合・最適化された。イオンバーンシュタイン波(IBW)の共鳴層を適切に選択すれば、軸上および軸外の両方での電子加熱により、電子圧力分布の全域的なピーキングと局所的な急峻化を伴う閉じ込めの改善が実現された。軸外IBW加熱によるMHD不安定性の安定化が実証された。内部輸送障壁構造は、軸外低混合同軸電流駆動(LHCD)によって形成された。Te ∼ 1 keV、中心密度 ∼ 1 × 10¹⁹ m⁻³の放電が、10〜20秒の持続時間で得られた。IBW加熱とLHCDの組み合わせにより、電流密度分布の平坦化がもたらされ、これは二つの波動間の相乗効果の兆候である可能性がある。実験結果は、電子圧力分布の制御におけるIBWの特徴がLHCDターゲットプラズマに統合可能であることを示している。HT-7は、IBW加熱とLHCDの最適化およびMHD活動の回避により、非誘導駆動電流割合50〜80%で、βN × H89 > 1〜4を満たす多様な放電を、エネルギー閉じ込め時間の数倍から数十倍の持続時間にわたって生成した。

wiki

Steady stateLower hybrid current driveHT-7Ion Bernstein wave
この論文にはまだAI要約がありません。

関連論文

Overview of the latest HT-7 experiments

2005Nuclear Fusion

Experimental investigation of the interaction of IBW and LHCD in the HT-7 tokamak

2004Nuclear Fusion

Suppression of MHD instabilities by ion Bernstein wave (IBW) heating in the HT-7 tokamak

2010Plasma Physics and Controlled Fusion

Electron heating by ion Bernstein wave in the HT-7 tokamak

2001Plasma Physics and Controlled Fusion

Lower hybrid current drive experiments and improved performance on the HT-7 superconducting tokamak

1999Nuclear Fusion

Simulated and experimental investigation on synergy of LHW and IBW in HT-7

2011Plasma Physics and Controlled Fusion

Study of confinement and LHCD efficiency on the HT-7 tokamak

2008Plasma Physics and Controlled Fusion

Enhancement of runaway production in lower hybrid current driven plasma with IBW heating in the HT-7 tokamak

2008Plasma Physics and Controlled Fusion

Integrated operation of steady-state long-pulse H-mode in Experimental Advanced Superconducting Tokamak

2019Nuclear Fusion

Transport simulation of EAST long-pulse H-mode discharge with integrated modeling

2018Nuclear Fusion