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Global energy confinement in the initial limiter configuration of Wendelstein 7-X

G. Fuchert, S.A. Bozhenkov, N. Pablant, K. Rahbarnia, Y. Turkin, A. Alonso, T. Andreeva, C.D. Beidler, M. Beurskens, A. Dinklage2018年被引用 17Nuclear FusionIF 3出版社

Global confinement properties of the limiter plasmas of the first operational campaign of W7-X are investigated with special focus on the energy confinement and possible operational limits. The energy confinement time was found to be close to expectations from the empirical ISS04 scaling for stellarators. Absolute values up to were achieved. This can be considered as a great success for the initial operation of the device. However, a clear degradation of the performance was observed when radiative losses became significant, which was typically the case at low heating power. While a significant improvement of the plasma purity is expected during divertor operation, the presented results underline the importance of the impurity dynamics for the development of high-performance steady-state scenarios in W7-X.Furthermore, comparisons of the global performance properties with neoclassical transport modeling are presented. These studies are not yet fully conclusive, which could indicate that anomalous transport may have played an essential role in the low-density OP1.1 plasmas.

日本語訳

W7-Xの最初の運転キャンペーンにおけるリミタープラズマの全体閉じ込め特性を、エネルギー閉じ込めと起こり得る運転限界に特に焦点を当てて調査した。エネルギー閉じ込め時間は、ステラレーターに対する経験的ISS04スケーリングからの予想に近いことが分かった。最大 までの絶対値が達成された。これは、本装置の初期運転としては大きな成功とみなすことができる。しかしながら、放射損失が顕著になった場合、典型的には低い加熱電力の場合に、性能の明確な劣化が観察された。ダイバータ運転中にはプラズマ純度の大幅な改善が期待される一方で、提示された結果は、W7-Xにおける高性能定常状態シナリオの開発における不純物ダイナミクスの重要性を強調している。さらに、全体性能特性と新古典輸送モデリングとの比較を示す。これらの研究はまだ完全に決定的ではなく、異常輸送が低密度OP1.1プラズマにおいて本質的な役割を果たした可能性を示唆している。

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wendelstein-7x高精度(タイトル一致)

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WendelsteinLimiterEnergy confinement
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