Energetic ion driven Alfven eigenmodes in Large Helical device plasmas with three-dimensional magnetic structure and their impact on energetic ion transport

被引:33
|
作者
Toi, K [1 ]
Yamamoto, S
Nakajima, N
Ohdachi, S
Sakakibara, S
Osakabe, M
Murakami, S
Watanabe, KY
Goto, M
Kawahata, K
Kolesnichenko, YI
Masuzaki, S
Morita, S
Narihara, K
Narushima, Y
Takeiri, Y
Tanaka, K
Tokuzawa, T
Yamada, H
Yamada, I
Yamazaki, K
机构
[1] Natl Inst Fus Sci, Tokai, Ibaraki 5095292, Japan
[2] Nagoya Univ, Nagoya, Aichi 4648603, Japan
[3] Inst Nucl Res, UA-03680 Kiev, Ukraine
关键词
D O I
10.1088/0741-3335/46/7/S01
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
In the Large Helical Device (LHD), energetic ion driven Alfven eigenmodes (AEs) and their impact on energetic ion transport have been studied. The magnetic configuration of the LHD is three-dimensional and has negative magnetic shear over a whole plasma radius in the low beta regime. These features introduce the characteristic structures of the shear Alfven spectrum. In particular, a core-localized type of toroidicity-induced AE (TAE) is most likely because the TAE gap frequency rapidly increases towards the plasma edge. Moreover, helicity-induced AEs (HAEs) can be generated through a toroidal mode coupling as well as poloidal one in the three-dimensional configuration. The following experimental results have been obtained in LHD plasmas heated by tangential neutral beam injection: (1) observation of core-localized TAEs having odd as well as even parity, (2) eigenmode transition of the core-localized TAE to global AEs (GAEs), which phenomenon is very similar to that in a reversed shear tokamak, (3) observation of HAEs of which the frequency is about eight times higher than the TAE gap frequency, (4) enhanced radial transport/loss of energetic ions caused by bursting TAEs in a relatively high beta regime, and (5) seed formation of internal transport barriers induced by TAE-induced energetic ion transport. These results will be important and interesting information for AE physics in toroidal plasmas.
引用
收藏
页码:S1 / S13
页数:13
相关论文
共 50 条
  • [21] Energetic ion confinement studies using comprehensive neutron diagnostics in the Large Helical Device
    Ogawa, K.
    Isobe, M.
    Nishitani, T.
    Murakami, S.
    Seki, R.
    Nuga, H.
    Kamio, S.
    Fujiwara, Y.
    Yamaguchi, H.
    Saito, Y.
    Maeta, S.
    Osakabe, M.
    NUCLEAR FUSION, 2019, 59 (07)
  • [22] Three-dimensional energetic ion sounding of the magnetopause using Cluster/RAPID
    Oksavik, K
    Fritz, TA
    Zong, QG
    Soraas, F
    Wilken, B
    GEOPHYSICAL RESEARCH LETTERS, 2002, 29 (09)
  • [23] Simulation of energetic particle driven geodesic acoustic modes and the energy channeling in the Large Helical Device plasmas
    Wang, Hao
    Todo, Yasushi
    Oasakabe, Masaki
    Ido, Takeshi
    Suzuki, Yasuhiro
    NUCLEAR FUSION, 2019, 59 (09)
  • [24] Heat and momentum transport of ion internal transport barrier plasmas on the Large Helical Device
    Nagaoka, K.
    Ida, K.
    Yoshinuma, M.
    Takeiri, Y.
    Yokoyama, M.
    Morita, S.
    Tanaka, K.
    Ido, T.
    Shimizu, A.
    Tamura, N.
    Funaba, H.
    Murakami, S.
    Goto, M.
    Takahashi, H.
    Suzuki, C.
    Suzuki, Y.
    Ikeda, K.
    Osakabe, M.
    Tsumori, K.
    Nakano, H.
    Kaneko, O.
    Yamada, H.
    NUCLEAR FUSION, 2011, 51 (08)
  • [25] Precession drift reversal and rapid transport of trapped energetic particles due to an energetic particle driven instability in the Large Helical Device
    Idouakass, M.
    Todo, Y.
    Wang, H.
    Wang, J.
    Seki, R.
    Sato, M.
    PHYSICS OF PLASMAS, 2021, 28 (08)
  • [26] Overview of Studies on Energetic-Ion-Driven MHD Instabilities in Stellarator/Helical Plasmas and Comparison with Tokamaks
    Toi, K.
    Isobe, M.
    Osakabe, M.
    Ogawa, K.
    Spong, D.
    Todo, Y.
    CONTRIBUTIONS TO PLASMA PHYSICS, 2010, 50 (6-7) : 493 - 500
  • [27] Transport characteristics of deuterium and hydrogen plasmas with ion internal transport barrier in the Large Helical Device
    Nagaoka, K.
    Takahashi, H.
    Nakata, M.
    Satake, S.
    Tanaka, K.
    Mukai, K.
    Yokoyama, M.
    Nakano, H.
    Murakami, S.
    Ida, K.
    Yoshinuma, M.
    Ohdachi, S.
    Bando, T.
    Nunami, M.
    Seki, R.
    Yamaguchi, H.
    Osakabe, M.
    Morisaki, T.
    NUCLEAR FUSION, 2019, 59 (10)
  • [28] Observation of energetic-ion losses induced by various MHD instabilities in the Large Helical Device (LHD)
    Ogawa, K.
    Isobe, M.
    Toi, K.
    Watanabe, F.
    Spong, D. A.
    Shimizu, A.
    Osakabe, M.
    Ohdachi, S.
    Sakakibara, S.
    NUCLEAR FUSION, 2010, 50 (08)
  • [29] Extension of operation regimes and investigation of three-dimensional currentless plasmas in the Large Helical Device
    Kaneko, O.
    Yamada, H.
    Inagaki, S.
    Jakubowski, M.
    Kajita, S.
    Kitajima, S.
    Kobayashi
    Koga, K.
    Morisaki, T.
    Morita, S.
    Mutoh, T.
    Sakakibara, S.
    Suzuki, Y.
    Takahashi, H.
    Tanaka, K.
    Toi, K.
    Yoshimura, Y.
    Akiyama, T.
    Asahi, Y.
    Ashikawa, N.
    Chikaraishi, H.
    Cooper, A.
    Darrow, D. S.
    Drapiko, E.
    Drewelow, P.
    Du, X.
    Ejiri, A.
    Emoto, M.
    Evans, T.
    Ezumi, N.
    Fujii, K.
    Fukuda, T.
    Funaba, H.
    Furukawa, M.
    Gates, D. A.
    Goto, M.
    Goto, T.
    Guttenfelder, W.
    Hamaguchi, S.
    Hasuo, M.
    Hino, T.
    Hirooka, Y.
    Ichiguchi, K.
    Ida, K.
    Idei, H.
    Ido, T.
    Igami, H.
    Ikeda, K.
    Imagawa, S.
    Imai, T.
    NUCLEAR FUSION, 2013, 53 (10)
  • [30] Nonlinear saturation of shear Alfven modes and self-consistent energetic ion transport in burning plasmas with advanced Tokamak equilibria
    Briguglio, S
    Vlad, G
    Zonca, F
    Fogaccia, G
    PHYSICS LETTERS A, 2002, 302 (5-6) : 308 - 312