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Progress at JET in integrating ITER-relevant core and edge plasmas within the constraints of an ITER-like wall

C Giroud, S Jachmich, P Jacquet, A Järvinen, E Lerche, F Rimini, L Aho-Mantila, N Aiba, I Balboa, P Belo2015年Plasma Physics and Controlled FusionIF 2.2出版社

This paper reports the progress made at JET-ILW on integrating the requirements of the reference ITER baseline scenario with normalized confinement factor of 1, at a normalized pressure of 1.8 together with partially detached divertor whilst maintaining these conditions over many energy confinement times. The 2.5 MA high triangularity ELMy H-modes are studied with two different divertor configurations with D-gas injection and nitrogen seeding. The power load reduction with N seeding is reported. The relationship between an increase in energy confinement and pedestal pressure with triangularity is investigated. The operational space of both plasma configurations is studied together with the ELM energy losses and stability of the pedestal of unseeded and seeded plasmas. The achievement of stationary plasma conditions over many energy confinement times is also reported.

日本語訳

本論文は、JET-ILWにおけるITERベースラインシナリオの要件統合に関する進展を報告するものである。規格化閉じ込め係数1、規格化圧力1.8、部分的に非接触ダイバータを維持しつつ、これらの条件を多数のエネルギー閉じ込め時間にわたって維持した。2.5 MAの高三角形度ELMy Hモードを、Dガス入射およびN入射という2つの異なるダイバータ配位で研究した。N入射による電力負荷低減を報告する。エネルギー閉じ込めの向上とペデスタル圧力の関係を三角形度の関数として調査した。両プラズマ配位の運転領域を、非入射時および入射時のELMエネルギー損失とペデスタル安定性とともに検討した。さらに、多数のエネルギー閉じ込め時間にわたる定常プラズマ状態の達成についても報告する。

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iter高精度(タイトル一致)jet高精度(タイトル一致)

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ITERJETEdge plasmaITER-like wall
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