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First results from divertor operation in Wendelstein 7-X

Thomas Sunn Pedersen, Ralf König, Maciej Krychowiak, Marcin Jakubowski, Jürgen Baldzuhn, Sergey Bozhenkov, Golo Fuchert, Andreas Langenberg, Holger Niemann, Daihong Zhang2019年Plasma Physics and Controlled FusionIF 2.2出版社

Wendelstein 7-X is a highly optimized stellarator that went into operation in 2015. With a 30 cubic meter volume, a superconducting coil system operating at 2.5 T, and steady-state heating capability of eventually up to 10 MW, it was built to demonstrate the benefits of optimized stellarators at parameters approaching those of a fusion power plant. We report here on the first results with the test divertor installed, during the second operation phase, which was performed in the second half of 2017. Operation with a divertor, and the addition of several new fueling systems, allowed higher density operation in hydrogen as well as helium. The effects that higher density operation had on both divertor operation and global confinement will be described. In particular, at high densities detachment was observed, and the highest fusion triple product for a stellarator was achieved.

日本語訳

Wendelstein 7-Xは、2015年に運転を開始した高度に最適化されたステラレーターである。30立方メートルの体積、2.5 Tで動作する超伝導コイルシステム、そして最終的には最大10 MWの定常加熱能力を備え、核融合発電所に近いパラメータでの最適化ステラレーターの利点を実証するために建設された。本稿では、2015年下半期に実施された第2運転フェーズにおいて、試験用ダイバータを設置して得られた最初の結果について報告する。ダイバータの設置と、いくつかの新しい燃料供給システムの追加により、水素およびヘリウムでの高密度運転が可能となった。高密度運転がダイバータ動作と全体閉じ込めの両方に及ぼす影響について述べる。特に、高密度ではデタッチメントが観測され、ステラレーターとして最高の核融合三重積が達成された。

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