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JET recent results on wave heating and current drive consequences for future devices

J Jacquinot, V P Bhatnagar, C Gormezano1993年Plasma Physics and Controlled FusionIF 2.2出版社

The latest developments of the JET ICRH and LHCD systems are reviewed. Feedback controls have alleviated the traditional difficulties with plasma-antenna coupling. Experimental results on high plasma performance, basic confinement aspects and issues relevant to the next generation of tokamaks are described. ICRH allows a narrow power deposition profile to be localised at will independently of the plasma density and size. The authors demonstrate that in large tokamaks, the constraint to use a minority species can be removed and heating a balanced D/T mixture at omega = omega CD in ITER is proposed. LHCD allows the highest current efficiency to be obtained. The conditions for wave accessibility are discussed in light of the JET results. LHCD is well adapted to save volt seconds in the current rise phase. The observed synergistic LHCD/ICRH acceleration of fast electrons is a promising route towards higher current drive efficiency but raises unresolved physics aspects which are analysed. They finally consider the prospects of a steady state fusion reactor.

日本語訳

JETのICRHおよびLHCDシステムの最新の開発状況について概説する。フィードバック制御により、プラズマ-アンテナ結合における従来の困難が緩和された。高プラズマ性能、基本的閉じ込め特性、および次世代トカマクに関連する課題に関する実験結果について述べる。ICRHは、プラズマ密度やサイズに依存せずに、電力堆積プロファイルを任意の位置に局在化させることを可能にする。著者らは、大型トカマクにおいて、マイノリティ種の使用という制約を排除し、omega = CDにおけるD/T混合比の加熱が可能であることを実証する。LHCDは、最高の電流駆動効率を達成する。JETの結果に基づき、波動のアクセス条件について考察する。LHCDは、電流立ち上げ段階におけるボルト秒の節約に適している。観測されたICRH/LHCDによる高速電子の加速は、より高い電流駆動効率への有望な経路を提供するが、未解決の物理的課題も提起する。最後に、定常状態核融合炉の見通しについて考察する。

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