Modeling of diamagnetic stabilization of ideal magnetohydrodynamic instabilities associated with the transport barrier
Modeling of diamagnetic stabilization of ideal magnetohydrodynamic instabilities associated with the transport barrier
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DOI:
10.1063/1.1398573
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发表时间:
2001-09
影响因子:
2.2
通讯作者:
G. Huysmans;S. Sharapov;A. Mikhailovskii;W. Kerner
中科院分区:
文献类型:
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作者:
G. Huysmans;S. Sharapov;A. Mikhailovskii;W. Kerner
A new code, MISHKA-D (Drift MHD), has been developed as an extension of the ideal magnetohydrodynamics (MHD) code MISHKA-1 in order to investigate the finite gyroradius stabilizing effect of ion diamagnetic drift frequency, ω*i, on linear ideal MHD eigenmodes in tokamaks in general toroidal geometry. The MISHKA-D code gives a self-consistent computation of both stable and unstable eigenmodes with eigenvalues |γ|≅ω*i in plasmas with strong radial variation in the ion diamagnetic frequency. Test results of the MISHKA-D code show good agreement with the analytically obtained ω*i spectrum and stability limits of the internal kink mode, n/m=1/1, used as a benchmark case. Finite-n ballooning and low-n kink (peeling) modes in the edge transport barrier just inside the separatrix are studied for high confinement mode (H-mode) plasmas with the ω*i effect included. The ion diamagnetic stabilization of the ballooning modes is found to be most effective for narrow edge pedestals. For low enough plasma density the ω*i...