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首页> 外文期刊>Physics of plasmas >Saturated ideal kink/peeling formations described as three-dimensional magnetohydrodynamic tokamak equilibrium states
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Saturated ideal kink/peeling formations described as three-dimensional magnetohydrodynamic tokamak equilibrium states

机译:描述为三维磁流体动力学托卡马克平衡态的饱和理想扭结/剥离结构

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摘要

Free boundary magnetohydrodynamic equilibrium states with spontaneous three dimensional deformations of the plasma-vacuum interface are computed for the first time. The structures obtained have the appearance of saturated ideal external kink/peeling modes. High edge pressure gradients yield toroidal mode number n = 1 corrugations for a high edge bootstrap current and larger n distortions when this current is small. Deformations in the plasma boundary region induce a nonaxisymmetric Pfirsch-Schluter current driving a field-aligned current ribbon consistent with reported experimental observations. A variation in the 3D equilibrium confirms that the n = 1 mode is a kink/peeling structure. We surmise that our calculated equilibrium structures constitute a viable model for the edge harmonic oscillations and outer modes associated with a quiescent H-mode operation in shaped tokamak plasmas.
机译:首次计算了等离子体-真空界面自发发生三维变形的自由边界磁流体动力学平衡态。获得的结构具有饱和的理想外部扭结/剥离模式的外观。对于高边沿自举电流,高边缘压力梯度会产生环形模式编号n = 1的波纹,而当该电流较小时,n形变较大。等离子体边界区域的变形会引起非轴对称的Pfirsch-Schluter电流,从而驱动与报告的实验观察结果一致的场对准电流带。 3D平衡的变化证实了n = 1模式是扭结/剥离结构。我们推测,我们计算出的平衡结构构成了与成形托卡马克等离子体中的静态H模式操作相关的边缘谐波振荡和外部模式的可行模型。

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