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Overview of the present progress and activities on the CFETR

Yuanxi Wan, Jiangang Li, Yong Liu, Xiaolin Wang, Vincent Chan, Changan Chen, Xuru Duan, Peng Fu, Xiang Gao, Kaiming Feng2017年被引用 481Nuclear FusionIF 3出版社

The China Fusion Engineering Test Reactor (CFETR) is the next device in the roadmap for the realization of fusion energy in China, which aims to bridge the gaps between the fusion experimental reactor ITER and the demonstration reactor (DEMO). CFETR will be operated in two phases. Steady-state operation and self-sufficiency will be the two key issues for Phase I with a modest fusion power of up to 200 MW. Phase II aims for DEMO validation with a fusion power over 1 GW. Advanced H-mode physics, high magnetic fields up to 7 T, high frequency electron cyclotron resonance heating and lower hybrid current drive together with off-axis negative-ion neutral beam injection will be developed for achieving steady-state advanced operation. The recent detailed design, research and development (R&D) activities including integrated modeling of operation scenarios, high field magnet, material, tritium plant, remote handling and future plans are introduced in this paper.

日本語訳

中国核融合工学試験炉(CFETR)は、中国における核融合エネルギーの実現に向けたロードマップにおける次期装置であり、核融合実験炉ITERと実証炉(DEMO)の間のギャップを埋めることを目的としている。CFETRは2つのフェーズで運転される予定である。定常運転と自給自足は、最大200 MWの控えめな核融合出力を有するフェーズIの2つの主要な課題となる。フェーズIIは、1 GWを超える核融合出力によるDEMO検証を目指す。先進Hモード物理、最大7 Tの高磁場、高周波電子サイクロトロン共鳴加熱、低域混成波電流駆動、およびオフアクシス負イオン中性粒子ビーム入射が、定常先進運転を達成するために開発されるであろう。本論文では、運転シナリオの統合モデリング、高磁場磁石、材料、トリチウムプラント、遠隔操作、および将来計画を含む、最近の詳細設計、研究開発(R&D)活動を紹介する。

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