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Extension of the operational regime of the LHD towards a deuterium experiment

Authors :
TAKEIRI, Yasuhiko
MORISAKI, Tomohiko
OSAKABE, Masaki
YOKOYAMA, Masayuki
SAKAKIBARA, Satoru
TAKAHASHI, Hiromi
Nakamura, Yukio
OISHI, Tetsutarou
MOTOJIMA, Gen
MURAKAMI, Sadayoshi
ITOH, Kimitaka
EJIRI, Akira
Imagawa, Shinsaku
INAGAKI, Shigeru
ISOBE, Mitsutaka
KUBO, Shin
MASAMUNE, Sadao
Mito, Toshiyuki
MURAKAMI, Izumi
NAGAOKA, Kenichi
NAGASAKI, Kazunobu
NISHIMURA, Kiyohiko
Sakamoto, Mizuki
SHIMOZUMA, Takashi
SHINOHARA, Kouji
SUGAMA, Hideo
WATANABE, Kiyomasa
Ahn, J.W.
Akata, Naofumi
AKIYAMA, Tsuyoshi
ASHIKAWA, Naoko
Baldzuhn, J.
Bando, T.
Bernard, E.
Castejón, F.
Chikaraishi, Hirotaka
EMOTO, Masahiko
EVANS5, Todd
Ezumi, N.
FUJII, Keisuke
FUNABA, Hisamichi
GOTO, Motoshi
Gradic, D.
Gunsu, Y.
Hamaguchi, S.
HASEGAWA, Hiroki
Hayashi, Y.
Hidalgo, C.
Higashiguchi, Takeshi
Hirooka, Y.
et, al.
TAKEIRI, Yasuhiko
MORISAKI, Tomohiko
OSAKABE, Masaki
YOKOYAMA, Masayuki
SAKAKIBARA, Satoru
TAKAHASHI, Hiromi
Nakamura, Yukio
OISHI, Tetsutarou
MOTOJIMA, Gen
MURAKAMI, Sadayoshi
ITOH, Kimitaka
EJIRI, Akira
Imagawa, Shinsaku
INAGAKI, Shigeru
ISOBE, Mitsutaka
KUBO, Shin
MASAMUNE, Sadao
Mito, Toshiyuki
MURAKAMI, Izumi
NAGAOKA, Kenichi
NAGASAKI, Kazunobu
NISHIMURA, Kiyohiko
Sakamoto, Mizuki
SHIMOZUMA, Takashi
SHINOHARA, Kouji
SUGAMA, Hideo
WATANABE, Kiyomasa
Ahn, J.W.
Akata, Naofumi
AKIYAMA, Tsuyoshi
ASHIKAWA, Naoko
Baldzuhn, J.
Bando, T.
Bernard, E.
Castejón, F.
Chikaraishi, Hirotaka
EMOTO, Masahiko
EVANS5, Todd
Ezumi, N.
FUJII, Keisuke
FUNABA, Hisamichi
GOTO, Motoshi
Gradic, D.
Gunsu, Y.
Hamaguchi, S.
HASEGAWA, Hiroki
Hayashi, Y.
Hidalgo, C.
Higashiguchi, Takeshi
Hirooka, Y.
et, al.
Publication Year :
2021

Abstract

As the finalization of a hydrogen experiment towards the deuterium phase, the exploration of the best performance of hydrogen plasma was intensively performed in the large helical device. High ion and electron temperatures, Ti and Te, of more than 6 keV were simultaneously achieved by superimposing high-power electron cyclotron resonance heating onneutral beam injection (NBI) heated plasma. Although flattening of the ion temperature profile in the core region was observed during the discharges, one could avoid degradation by increasing the electron density. Another key parameter to present plasma performance is an averaged beta value $\left\langle \beta \right\rangle $ . The high $\left\langle \beta \right\rangle $ regime around 4% was extended to an order of magnitude lower than the earlier collisional regime. Impurity behaviour in hydrogen discharges with NBI heating was also classified with a wide range of edge plasma parameters. The existence of a no impurity accumulation regime, where the high performance plasma is maintained with high power heating >10 MW, was identified. Wide parameter scan experiments suggest that the toroidal rotation and the turbulence are the candidates for expelling impurities from the core region.<br />source:Y. Takeiri et al 2017 Nucl. Fusion 57 102023<br />source:https://doi.org/10.1088/1741-4326/aa7fc2<br />identifier:0000-0001-7569-6717

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1375197679
Document Type :
Electronic Resource