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Overview on the progress of tokamak experimental research in China

Jikang Xie, HT-7 Team, Yong Liu, HL-1M Team, Yizhi Wen, KT-5 Team, Long Wang, CT-6B Team2001年被引用 8Nuclear FusionIF 3出版社

Tokamak experimental research in China has made important progress. The main efforts were related to quasi-steady-state operation, LHCD, plasma heating with ICRF, IBW, NBI and ECRH, fuelling with pellets and supersonic molecular beams, and first wall conditioning techniques. Plasma parameters in the experiments were much improved, for examplene = 8 × 1019m-3 and a plasma pulse length of >10 s were achieved.ICRF boronization and conditioning resulted in Zeff close to unity. Steady state full LH wave current drive has been achieved for more than 3 s. LHCD ramp-up and recharge have also been demonstrated. The best ηCDexp ≈ 0.5(1+0.085exp(4.8(BT-1.45)))neICDRp/PLH = 1019 m-2 A W-1. Quasi-steady-state H-mode-like plasmas with a density close to the Greenwald limit were obtained by LHCD, where the energy confinement time was nearly five times longer than in the ohmic case. The synergy between IBW, pellet and LHCD was tested. Research on the mechanism of macroturbulence has been extensively carried out experimentally. AC tokamak operation has been successfully demonstrated.

日本語訳

中国におけるトカマク実験研究は重要な進展を遂げた。主な取り組みは、準定常運転、LHCD、ICRF、IBW、NBIおよびECRHによるプラズマ加熱、ペレットおよび超音速分子ビームによる燃料供給、ならびに第一壁調整技術に関連するものであった。実験におけるプラズマパラメータは大幅に改善され、例えば8×10¹⁹m⁻³、プラズマパルス長10秒以上が達成された。ICRFボロナイゼーションおよび調整により、Zeffは1に近い値が得られた。定常状態の完全LH電流駆動は3秒以上達成された。LHCDによるランプアップおよびリチャージも実証された。最良のη_CDは約0.5(1+0.085exp(4.8(B_T-1.45)))n_eI_CDR_p/P_LH = 10¹⁹m⁻²A/Wであった。LHCDにより、グリーンワルド限界に近い密度を有する準定常Hモード様プラズマが得られ、エネルギー閉じ込め時間はオーミックプラズマの約5倍であった。IBW、ペレットおよびLHCDの相乗効果が試験された。マクロ乱流のメカニズムに関する研究が広範囲にわたって実験的に行われた。ACトカマク運転が成功裏に実証された。

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