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Attainment of high fusion reactivity under high bootstrap current fraction in JT-60U

T. Nishitani, S. Ishida, M. Kikuchi, M. Azumi, M. Yamagiwa, T. Fujita, Y. Kamada, Y. Kawano, Y. Koide, T. Hatae1994年被引用 31Nuclear FusionIF 3出版社

The fusion performance of high βp plasmas with significant D-D neutron production up to (5.6 ± 0.6) × 1016 n/s, has been investigated. The attainment of a high fusion triple product, nd(0) τEtotalTi(0), up to (1.1 ± 0.3) × 1021 m-3.s.keV is confirmed by both time dependent and time slice analysis. The highly enhanced confinement of up to 3.6 times ITER-89P scaling is dominated by the improved thermal confinement, and one half of the D-D neutrons come from the thermal reactions. The highest equivalent QDT of approximately 0.56 was obtained. The ratio QDT/QDD is in the range 133-151. More importantly, a high bootstrap current of up to approximately 1 MA (~50% of the total current) was obtained simultaneously with the high fusion performance. These results are quite encouraging as far as the realization of a steady state tokamak reactor is concerned

日本語訳

高βプラズマにおける核融合性能と、最大(5.6±0.6)×10¹⁶ n/sに達する有意なD-D中性子生成について調査した。高核融合三重積nd(0)τEtotalTi(0)の達成値(1.1±0.3)×10²¹ m⁻³・s・keVは、時間スライス解析と時間積分解析の両方によって確認された。ITER-89Pスケーリングの3.6倍に及ぶ高い閉じ込め改善は、主に熱閉じ込めの改善に起因しており、D-D中性子の約半分は熱的反応によるものである。最大等価QDTは約0.56に達した。QDT/QDD比は133〜151の範囲であった。さらに重要なことに、高い核融合性能と同時に、全プラズマ電流の約50%(約1 MA)に達する高いブートストラップ電流が得られた。これらの結果は、定常トカマク炉の実現に関して極めて有望である。

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iter中精度(概要文一致)

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JT-60UBootstrap current
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