Extension of operation regimes and investigation of three-dimensional currentless plasmas in the Large Helical Device

O Kaneko,Hisashi Yamada,S Inagaki,M Jakubowski,Shuuji Kajita,Shigetaka Kitajima, Kobayashi,K Koga,Takayuki Morisaki,Satoshi Morita,T Mutoh, S Sakakibara,Yasuo Suzuki,Hideaki Takahashi,Kazuhiro Tanaka,Keio Toi,Y Yoshimura,Taishin Akiyama,Y Asahi,N Ashikawa,Hirotaka Chikaraishi, Arthur Cooper,D S Darrow,Evgeny A Drapiko, P Drewelow, Xiaohua Du,Akira Ejiri,M Emoto,T E Evans,N Ezumi,K Fujii,T Fukuda,H Funaba, Madoka Furukawa,D A Gates, M Goto,Takayuki Goto,W Guttenfelder,S Hamaguchi,Masahiro Hasuo,Tomoya Hino,Yuuri Hirooka,K Ichiguchi,K Ida,H Idei,T Ido,H Igami,Kazutaka Ikeda,Shinsaku Imagawa,Tetsuro Imai,Mitsuaki Isobe, Masayuki Itagaki,T Ito,Kazuhiro Itoh,S I Itoh,Akifumi Iwamoto,Kaichiro Kamiya,Tsuyoshi Kariya,H Kasahara,N Kasuya,D Kato, Tomoko Kato, K Kawahata,Fumihiro Koike, S Kubo,R Kumazawa,Daisuke Kuwahara,S Lazerson,H Lee,S Masuzaki,Satoshi Matsuoka,Hideo Matsuura, Akihisa Matsuyama,C F Michael,D R Mikkelsen,Osamu Mitarai,Toshiyuki Mito,J Miyazawa,G Motojima,Kohki Mukai,A Murakami,I Murakami,S Murakami,Takemi Muroga,S Muto, K Nagaoka,K Nagasaki,Y Nagayama,N Nakajima,H Nakamura,Yatsuka Nakamura,Hiroki Nakanishi,Hiroyasu Nakano, T Nakano, K Narihara, Y Narushima,K Nishimura,S Nishimura,Masaki Nishiura,Y M Nunami,Tetsuhiro Obana,K Ogawa,S Ohdachi,Nobuhiko Ohno,N Ohyabu,Toshiyuki Oishi,M Okamoto,A Okamoto,M Osakabe, Yasushi Oya,T Ozaki,N Pablant, B J Peterson,A Sagara,K Saito,R Sakamoto,Hiroyuki Sakaue,M Sasao,K Sato,M Sato, K Sawada,R Seki,T Seki,V A Sergeev,S E Sharapov,I A Sharov,Atsushi Shimizu, T Shimozuma,Masaharu Shiratani,Mamoru Shoji,S Sudo,Hideo Sugama,C Suzuki,Kazuya Takahata,Y Takeiri,Yasuo Takemura, Makoto Takeuchi,Hideyuki Tamura,N Tamura,H Tanaka,T Tanaka, M Tingfeng,Y Todo,Masayuki Tokitani,K Tokunaga,T Tokuzawa,H Tsuchiya, K Tsumori, Yasushi Ueda,L N Vyacheslavov, K Watanabe,Tomonori Watanabe, B Wieland,I Yamada,S Yamada,Satoshi Yamamoto,Nagato Yanagi,Ryo Yasuhara,M Yokoyama, N Yoshida,Shige H Yoshimura, Takeo Yoshinaga, M Yoshinuma,A Komori

NUCLEAR FUSION(2013)

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摘要
The progress of physical understanding as well as parameter improvement of net-current-free helical plasma is reported for the Large Helical Device since the last Fusion Energy Conference in Daejeon in 2010. The second low-energy neutral beam line was installed, and the central ion temperature has exceeded 7 keV, which was obtained by carbon pellet injection. Transport analysis of the high-T-i plasmas shows that the ion-thermal conductivity and viscosity decreased after the pellet injection although the improvement does not last long. The effort has been focused on the optimization of plasma edge conditions to extend the operation regime towards higher ion temperature and more stable high density and high beta. For this purpose a portion of the open helical divertors are being modified to the baffle-structured closed ones aimed at active control of the edge plasma. It is compared with the open case that the neutral pressure in the closed helical divertor increased by ten times as predicted by modelling. Studies of physics in a three-dimensional geometry are highlighted in the topics related to the response to a resonant magnetic perturbation at the plasma periphery such as edge-localized-mode mitigation and divertor detachment. Novel approaches of non-local and non-diffusive transport have also been advanced.
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