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Stability of tokamak plasmas with internal transport barriers against high n ideal magnetohydrodynamic ballooning mode
作者姓名:石秉仁  曲文孝
作者单位:Southwestern Institute of Physics, Chengdu 610041, China;Southwestern Institute of Physics, Chengdu 610041, China
基金项目:Project supported by the National Natural Science Foundation of China (Grant No 10375018).
摘    要:A ballooning mode equation for tokamak plasma, with the toroidicity and the Shafranov shift effects included, is derived for a shift circular flux tokamak configuration. Using this equation, the stability of the plasma configuration with an internal transport barrier (ITB) against the high n (the toroidal mode number) ideal magnetohydrodynamic (MHD) ballooning mode is analysed. It is shown that both the toroidicity and the Shaftanov shift effects are stabilizing. In the ITB region, these effects give rise to a low shear stable channel between the first and the second stability regions. Out of the ITB region towards the plasma edge, the stabilizing effect of the Shaftanov shift causes the unstable zone to be significantly narrowed.

关 键 词:环形效应  内传输障碍  托卡马克装置  核物理
收稿时间:2005-11-09
修稿时间:4/4/2006 12:00:00 AM

Stability of tokamak plasmas with internal transport barriers against high n ideal magnetohydrodynamic ballooning mode
Shi Bing-Ren and Qu Wen-Xiao.Stability of tokamak plasmas with internal transport barriers against high n ideal magnetohydrodynamic ballooning mode[J].Chinese Physics B,2006,15(7):1532-1538.
Authors:Shi Bing-Ren and Qu Wen-Xiao
Institution:Southwestern Institute of Physics, Chengdu 610041, China
Abstract:A ballooning mode equation for tokamak plasma, with the toroidicity and the Shafranov shift effects included, is derived for a shift circular flux tokamak configuration. Using this equation, the stability of the plasma configuration with an internal transport barrier (ITB) against the high n (the toroidal mode number) ideal magnetohydrodynamic (MHD) ballooning mode is analysed. It is shown that both the toroidicity and the Shafranov shift effects are stabilizing. In the ITB region, these effects give rise to a low shear stable channel between the first and the second stability regions. Out of the ITB region towards the plasma edge, the stabilizing effect of the Shafranov shift causes the unstable zone to be significantly narrowed.
Keywords:toroidal effect  ballooning mode  internal transport barrier
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