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Global approach to the spectral problem of microinstabilities in tokamak plasmas using a gyrokinetic model

机译:陀螺动力学模型解决托卡马克等离子体微不稳定性光谱问题的全局方法

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摘要

A solution to the full two-dimensional eigenvalue problem of electrostatic microinstabilities in a tokamak plasma is presented in the framework of gyrokinetic theory. The approach is the generalization of methods previously developed for a cylindrical system [S. Brunner and J. Vaclavik, Phys. Plasmas 5, 365 (1998)]. By solving the spectral problem in a special Fourier space adapted to the curved geometry, orbit width as well as Larmor radius can be kept to all orders. For a first numerical implementation, a large aspect ratio plasma with circular concentric magnetic surfaces is considered. A root finding algorithm for identifying the eigenfrequencies, based on a higher order Nyquist method, enables straightforward implementation on a parallel computer. Illustrative results for ion temperature gradient-related instabilities are presented. These include scaling studies of the radial width, and toroidicity and magnetic shear scans, as well as the effects of nonadiabatic trapped electron dynamics. (C) 1998 American Institute of Physics. [S1070-664X(98)00311-5]. [References: 32]
机译:在陀螺动力学理论的框架内,提出了一个解决托卡马克等离子体中静电微不稳定性的完整二维特征值问题的方法。该方法是以前为圆柱系统开发的方法的概括[S. Brunner和J. Vaclavik,物理学。 Plasmas 5,365(1998)]。通过在适合于弯曲几何形状的特殊傅立叶空间中解决光谱问题,可以将轨道宽度以及拉莫尔半径保持在所有数量级。对于第一数值实现,考虑具有圆形同心磁性表面的大纵横比的等离子体。基于高阶奈奎斯特方法的用于识别特征频率的寻根算法可以在并行计算机上实现直接实现。给出了离子温度梯度相关不稳定性的说明性结果。这些研究包括径向宽度的定标研究,超环面和磁剪切扫描,以及非绝热俘获电子动力学的影响。 (C)1998美国物理研究所。 [S1070-664X(98)00311-5]。 [参考:32]

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