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Interaction of externally applied rotating helical field with tokamak plasma

机译:外部旋转螺旋场与托卡马克等离子体的相互作用

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摘要

The penetration process of a rotating magnetic perturbation into a rotating tokamak plasma has been investigated, taking account of the mode structure of the perturbations, and using a small magnetic probe in the small research tokamak CSTN-IV. It was observed that the radial component of the perturbation was amplified in the plasma when magnetic islands are formed, while the poloidal component was attenuated but, deep inside the plasma, amplified. Using a resistive MHD code, such modifications of external perturbation were found to be caused by a redistribution of plasma current due to the formation of magnetic islands. Considering the phase velocity of both the perturbation and the intrinsic plasma rotation, it was also found that the sideband component substantially affects the penetration process with magnetic islands forming. Therefore, in dynamic ergodic divertor operation, it is necessary to put the emphasis not only on the frequency of the perturbation fields but also on their direction, mode structure and the radial profile of the intrinsic plasma rotation at the same time.
机译:考虑到扰动的模式结构,并在小型研究托卡马克CSTN-IV中使用小型磁探针,已经研究了旋转磁扰动向旋转托卡马克等离子体的渗透过程。观察到,当形成磁性岛时,等离子体中的扰动的径向分量被放大,而沿径向的分量被衰减,但是在等离子体的深处被放大。使用电阻性MHD代码,发现外部扰动的这种修改是由于磁岛的形成而引起的等离子体电流的重新分布引起的。考虑到扰动和固有的等离子体旋转的相速度,还发现边带分量实质上影响了具有磁岛形成的穿透过程。因此,在动态遍历偏滤器操作中,不仅要着重于扰动场的频率,而且要同时强调其方向,模式结构和固有等离子体旋转的径向轮廓。

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