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Experimental and theoretical analyses of penetration processes of externally applied rotating helical magnetic perturbation fields in TEXTOR and HYBTOK-II

机译:TEXTOR和HYBTOK-II中外加旋转螺旋磁扰动场穿透过程的实验和理论分析

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Penetration processes of rotating helical magnetic perturbation field into tokamak plasmas have been investigated by the dynamic ergodic divertor (DED) in TEXTOR. Experimental observations of the field penetration and field amplification are performed and the data are interpreted by theoretical analyses based on a linearized two-fluid plasma model. It is observed that the growth of the forced magnetic reconnection by the rotating DED-field is accompanied by a change in the plasma fluid rotation. The theoretical model is also applied to the DED experiment in the small tokamak device HYBTOK-II. It is confirmed that the theoretical analyses can explain the observed radial profiles of the DED-field in the plasma by inserting small magnetic pick-up coils in HYBTOK-II.
机译:TEXTOR中的动态遍历偏滤器(DED)已研究了将螺旋磁扰动场旋转成托卡马克等离子体的渗透过程。进行了场穿透和场放大的实验观察,并基于线性双流体等离子体模型通过理论分析来解释数据。可以观察到,旋转的DED场引起的强制磁连接的增长伴随着等离子流体旋转的变化。该理论模型也被应用于小型托卡马克装置HYBTOK-II的DED实验。可以肯定的是,理论分析可以通过在HYBTOK-II中插入小的电磁线圈来解释等离子体中DED场的径向分布。

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