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Achieving and sustaining advanced scenarios in ITER modelled by CRONOS and DINA-CH

K Besseghir, J Garcia, J-F Artaud, F Imbeaux, R R Khayrutdinov, J B Lister, V E Lukash, P Maget2013年Plasma Physics and Controlled FusionIF 2.2出版社

The heating and current drive characteristics for accessing advanced scenarios in ITER, close to those obtained in present-day experiments, are analysed together with the plasma performance using the prescribed-boundary CRONOS suites of codes. For the hybrid scenario, a sensitivity analysis shows the sensitivity to the parameter range which leads to an appropriate control of the safety factor and pressure profiles. A steady-state regime with no internal transport barrier is obtained as a natural extension of the hybrid regime. These prescribed-boundary scenario developments are used as an initial step for a complete free-boundary simulation carried out with the DINA-CH code coupled to CRONOS, which once again underlines how sensitive the ITER advanced scenarios are to small plasma geometry changes. Both scenarios were achieved within the technical limits of ITER, specifically the poloidal field coil currents, voltages, forces and fields.

日本語訳

加熱および電流駆動の特性は、現在の実験で得られたものに近いITERの先進シナリオについて、規定境界CRONOSコード群を用いたプラズマ性能とともに解析される。ハイブリッドシナリオについては、安全係数および圧力分布の適切な制御につながるパラメータ範囲に対する感度解析が示される。内部輸送障壁を伴わない定常状態 regime は、ハイブリッド regime の自然な拡張として得られる。これらの規定境界シナリオの展開は、CRONOSに結合されたDINA-CHコードによる完全自由境界シミュレーションの初期段階として用いられ、これによりITERの先進シナリオが小さなプラズマ形状変化に対してどれほど敏感であるかが再び強調される。両シナリオは、ITERの技術的限界、特にポロイダル磁場コイル電流、電圧、力および磁場の範囲内で達成された。

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