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Core plasma design of the compact helical reactor with a consideration of the equipartition effect

T Goto, J Miyazawa, N Yanagi, H Tamura, T Tanaka, R Sakamoto, C Suzuki, R Seki, S Satake, M Nunami2018年Plasma Physics and Controlled FusionIF 2.2出版社

Integrated physics analysis of plasma operation scenario of the compact helical reactor FFHR-c1 has been conducted. The DPE method, which predicts radial profiles in a reactor by direct extrapolation from the reference experimental data, has been extended to implement the equipartition effect. Close investigation of the plasma operation regime has been conducted and a candidate plasma operation point of FFHR-c1 has been identified within the parameter regime that has already been confirmed in LHD experiment in view of MHD equilibrium, MHD stability and neoclassical transport.

日本語訳

FFHR-c1のコンパクトヘリカルリアクターのプラズマ運転シナリオに関する統合物理解析を実施した。基準実験データからの直接外挿により径方向プロファイルを予測するDPE法を、等分配効果を考慮するように拡張した。プラズマ運転領域の詳細な調査を行い、MHD平衡、MHD安定性、および新古典輸送の観点からLHD実験で既に確認されているパラメータ領域内で、FFHR-c1の候補となるプラズマ運転点を同定した。

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lhd中精度(概要文一致)
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