Published October 2008 | Version v1
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MHD simulation of high wavenumber ballooning-like modes in LHD

Description

Dynamical growths of high-wavenumber ballooning modes are studied through full-3D nonlinear MHD simulations of the Large Helical Device. The growths of the ballooning modes are identified by studying the growth rates and the radial profiles of the Fourier coefficients of fluctuation variables. The mechanisms to weaken the growth of instability, such as the local fattening of the pressure and the energy release to the parallel kinetic energy, are found being insufficient to suppress the high-wavenumber ballooning modes. Consequently, the mean pressure profile is totally modified when the evolutions of the ballooning modes are saturated. The numerical results reveal that we need some mechanisms which do not originate from an ideal MHD to achieve a mild, saturated behaviors beyond the growths of unstable high ballooning modes in the helical device. The parallel heat conductivity is proposed as one of possible non-ideal mechanisms. (author)

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Additional details

Publishing Information

Imprint Pagination
9 p.
Report number
NIFS--917

Conference

Title
22. IAEA fusion energy conference
Dates
13-18 Oct 2008
Place
Geneva (Switzerland)

Optional Information

Notes
13 refs., 6 figs.
Secondary number(s)
IAEA-CN--165; TH/P9--16