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Critical β analyses with ferromagnetic and plasma rotation effects and wall geometry for a high β steady state tokamak

机译:高铁稳态托卡马克具有铁磁和等离子体旋转效应以及壁几何形状的临界β分析

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摘要

The critical beta, which is limited by an external kink mode with Alfven wave time scale, is shown to be decreased by ferromagnetic effect by about 8% for μ/μ_0 ~ 2 where μ and μ_0 denote the permeability of a ferromagnetic wall and vacuum, respectively, for a tokamak of aspect ratio 3. The existence of the stability window in the wall distance for resistive wall mode opened by the effects of both the toroidal plasma rotation and the plasma dissipation, which was not observed for the high aspect ratio tokamak, is found for the tokamak of aspect ratio 3. The effect of ferromagnetism on them is also investigated. The critical beta analyses of the National Centralized Tokamak (NCT) plasma using the VALEN code are started by stabilizing plate and vacuum vessel geometry with finite resistivity, and the results of the passive effect of the stabilizing plate are obtained. The calculations including the stabilizing effect of the vacuum vessel and also active feedback control are performed for a design of the NCT plasma.
机译:对于μ/μ_0〜2,铁磁性效应使临界β受Alfven波时标的外部扭结模式的限制而降低了约8%,其中μ和μ_0表示铁磁壁的磁导率和真空,对于长宽比为3的托卡马克,在环形壁的距离中存在稳定性窗口,这是由于环形等离子体旋转和等离子耗散的影响而打开的,而对于高长宽比的托卡马克,则没有观察到,发现了长宽比为3的托卡马克。还研究了铁磁性对其的影响。通过使用稳定的板和具有有限电阻率的真空容器几何形状,开始使用VALEN代码对National Centralized Tokamak(NCT)等离子体进行关键的beta分析,并获得了稳定板的被动效应结果。对于NCT等离子体的设计,要进行包括真空容器的稳定作用以及有源反馈控制在内的计算。

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