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research article

Microinstability studies for the large helical device

Rewoldt, G.
•
Ku, L. P.
•
Tang, W. M.
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2002
Nuclear Fusion

Fully kinetic assessments of the stability properties of toroidal drift modes have been obtained for cases for the large helical device (LHD). This calculation employs the comprehensive linear microinstability code FULL, as recently extended for nonaxisymmetric systems. The code retains the important effects in the linearized gyrokinetic equation, using the lowest-order 'ballooning representation' for high toroidal mode number instabilities in the electrostatic limit. These effects include trapped particles, FLR, transit and bounce and magnetic drift frequency resonances, etc. for any number of plasma species. Results for toroidal drift waves destabilized by trapped electrons and ion temperature gradients are presented, using numerically-calculated three-dimensional MHD equilibria. These are reconstructed from experimental measurements. Quasilinear fluxes of particles and energy for each species are also calculated. Pairs of LHD discharges with different magnetic axis positions and with and without pellet injection are compared. The properties of the calculated linearly unstable modes are compared with the experimentally observed anomalous transport.

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Type
research article
DOI
10.1088/0029-5515/42/9/301
Web of Science ID

WOS:000178425500002

Author(s)
Rewoldt, G.
Ku, L. P.
Tang, W. M.
Sugama, H.
Nakajima, N.
Watanabe, K. Y.
Murakami, S.
Yamada, H.
Cooper, W. A.  
Date Issued

2002

Publisher

IOP Publishing Ltd

Published in
Nuclear Fusion
Volume

42

Issue

9

Start page

1047

End page

1054

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CRPP  
SPC  
Available on Infoscience
April 16, 2008
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/21822
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