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Design and construction of the KSTAR tokamak

G.S. Lee, M. Kwon, C.J. Doh, B.G. Hong, K. Kim, M.H. Cho, W. Namkung, C.S. Chang, Y.C. Kim, J.Y. Kim2001年被引用 137Nuclear FusionIF 3出版社

The extensive design effort for KSTAR has been focused on two major aspects of the KSTAR project mission - steady-state-operation capability and advanced tokamak physics. The steady state aspect of the mission is reflected in the choice of superconducting magnets, provision of actively cooled in-vessel components, and long pulse current drive and heating systems. The advanced tokamak aspect of the mission is incorporated in the design features associated with flexible plasma shaping, double null divertor and passive stabilizers, internal control coils and a comprehensive set of diagnostics. Substantial progress in engineering has been made on superconducting magnets, the vacuum vessel, plasma facing components and power supplies. The new KSTAR experimental facility with cryogenic system and deionized water cooling and main power systems has been designed, and the construction work is under way for completion in 2004.

日本語訳

KSTARのための広範な設計努力は、KSTARプロジェクトの使命の2つの主要な側面、すなわち定常運転能力と先進トカマク物理に焦点を当ててきた。使命の定常状態の側面は、超伝導磁石の選択、能動冷却された真空容器内コンポーネントの設置、および長パルス電流駆動・加熱システムに反映されている。使命の先進トカマクの側面は、柔軟なプラズマ形状制御、ダブルヌルダイバータと受動安定化装置、内部制御コイル、および包括的な診断装置群に関連する設計特徴に組み込まれている。超伝導磁石、真空容器、プラズマ対向コンポーネント、および電源システムに関して、工学における substantial な進展が達成された。極低温システム、脱イオン水冷却、および主電源システムを備えた新しいKSTAR実験施設が設計され、2004年の完成に向けて建設作業が進行中である。

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