Density Regimes of Complete Detachment and Serpens Mode in LHD
スポンサーリンク
概要
- 論文の詳細を見る
In the Large Helical Device (LHD), the hot plasma column shrinks at the high-density regime and complete detachment takes place. Hydrogen volume recombination is observed at complete detachment. This phase is self-sustained under specific experimental conditions and called the Serpens mode (self-regulated plasma edge 'neath the last-closed-flux-surface). The Serpens mode is achieved after either rapid or slow density ramp up, and either by hydrogen or helium gas puffing. The threshold conditions for complete detachment and the Serpens mode are experimentally documented in the parameter space of heating power and density. The threshold density for the Serpens mode transition increases with ˜ 0.4 power of the heating power. The total radiation is shown to be not adequate to describe the threshold conditions, since it mainly includes the information of very edge region outside the hot plasma column. The operational density limit in LHD, which is sustainable in steady state, has been extended to 1.7 times as high as the Sudo density limit, by applying pellet injection to the Serpens plasmas.
- 社団法人 プラズマ・核融合学会の論文
著者
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MURAKAMI Sadayoshi
Department of Nuclear Engineering, Kyoto University
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OHYABU Nobuyoshi
National Insitute for Fusion Science
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KOMORI Akio
National Insitute for Fusion Science
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YAMADA Hiroshi
National Insitute for Fusion Science
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FUNABA Hisamichi
National Insitute for Fusion Science
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GOTO Motoshi
National Insitute for Fusion Science
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MASUZAKI Suguru
National Insitute for Fusion Science
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MORISAKI Tomohiro
National Insitute for Fusion Science
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MORITA Shigeru
National Insitute for Fusion Science
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NARIHARA Kazumichi
National Insitute for Fusion Science
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NISHIMURA Kiyohiko
National Insitute for Fusion Science
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OSAKABE Masaki
National Insitute for Fusion Science
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SAKAKIBARA Satoru
National Insitute for Fusion Science
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SAKAMOTO Ryuichi
National Insitute for Fusion Science
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SHOJI Mamoru
National Insitute for Fusion Science
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TOKUZAWA Tokihiko
National Insitute for Fusion Science
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YAMADA Ichihiro
National Insitute for Fusion Science
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MOTOJIMA Osamu
National Insitute for Fusion Science
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MIYAZAWA Junichi
National Institute for Fusion Science, 322-6 Oroshi, Toki, Gifu 509-5292, Japan
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KOBAYASHI Masahiro
National Institute for Fusion Science, 322-6 Oroshi, Toki, Gifu 509-5292, Japan
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Ohyabu Nobuyoshi
National Institute For Fusion Science
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ASHIKAWA Naoko
National Institute for Fusion Science
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Funaba Hisamichi
National Institute For Fusion Science
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Yamada Ichihiro
National Institute For Fusion Science
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NISHIURA Masaki
National Institute for Fusion Science
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Morita Shigeru
National Institute For Fusion Science
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Nishimura Kiyohiko
National Institute For Fusion Science
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Tamura Naoki
National Institute For Fusion Science
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Tanaka Kenji
National Food Institute
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Morisaki Tomohiro
National Institute For Fusion Science
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PETERSON Byron
National Insitute for Fusion Science
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Sakamoto Ryuichi
National Institute for Fusion Science
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OSAKABE Masaki
National Institute for Fusion Science
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ARIMOTO Hajime
Graduate School of Energy Science, Kyoto University
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KONDOH Katsumi
Graduate School of Energy Science, Kyoto University
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ARIMOTO Hajime
Graduate School of Energy Science, Kyoto Univ., Gokasho, Uji 611-0011, Japan
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MIYAZAWA Junichi
National Institute for Fusion Science
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KOBAYASHI Masahiro
National Institute for Fusion Science
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SHOJI Mamoru
National Institute for Fusion Science
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