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Simulations of steady-state scenarios for Tore Supra using the CRONOS code

V. Basiuk, J.F. Artaud, F. Imbeaux, X. Litaudon, A. Bécoulet, L.-G. Eriksson, G.T. Hoang, G. Huysmans, D. Mazon, D. Moreau2003年被引用 109Nuclear FusionIF 3出版社

Scenarios of steady-state, fully non-inductive current in Tore Supra are predicted using a package of simulation codes (CRONOS). The plasma equilibrium and transport are consistently calculated with the deposition of power. The achievement of high injected energy discharges up to 1 GJ is shown. Two main scenarios are considered: a low density regime with 90% non-inductive current driven by lower hybrid waves—lower hybrid current drive (LHCD)—and a high density regime combining LHCD and ion cyclotron resonance heating with a bootstrap current fraction up to 25%. The predictive simulations of existing discharges are also reported.

日本語訳

Tore Supraにおける定常・完全非誘導電流のシナリオは、シミュレーションコード群(CRONOS)を用いて予測される。プラズマ平衡と輸送は、電力堆積と整合的に計算される。1 GJまでの高投入エネルギー放電の達成が示される。主に2つのシナリオが検討される:低密度領域における、下部ハイブリッド波による非誘導電流駆動(LHCD)が90%を占めるシナリオと、高密度領域における、LHCDとイオンサイクロトロン共鳴加熱を組み合わせ、ブートストラップ電流が最大25%を占めるシナリオである。既存の放電に対する予測シミュレーションも報告される。

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Steady stateTore Supra
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