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首页> 外文期刊>Plasma Science, IEEE Transactions on >Simulation of High-Harmonic Fast-Wave Heating on the National Spherical Tokamak Experiment
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Simulation of High-Harmonic Fast-Wave Heating on the National Spherical Tokamak Experiment

机译:高斯快波加热在国家托卡马克球形实验中的模拟

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摘要

Images associated with radio-frequency heating of low-confinement mode plasmas in the National Spherical Tokamak Experiment, as calculated by computer simulation, are presented. The AORSA code has been extended to simulate the whole antenna-to-plasma heating system by including both the kinetic physics of the well-confined core plasma and a poorly confined scrape-off plasma and vacuum vessel structure. The images presented show the 3-D electric wave field amplitude for various antenna phasings. Visualization of the simulation results in 3-D makes clear that $-30^{circ}$ phasing excites kilo-volt per meter coaxial standing modes in the scrape-off plasma and shows magnetic-field-aligned whispering-gallery type modes localized to the plasma edge.
机译:通过计算机模拟计算,显示了在国家球形托卡马克实验中与低约束模式等离子体的射频加热相关的图像。 AORSA代码已扩展为模拟整个天线到等离子体的加热系统,包括了密闭核心等离子体的动力学特性以及密闭刮除等离子体和真空容器的结构。所显示的图像显示了各种天线定相的3-D电波振幅。在3-D中可视化仿真结果可以清楚地看到,$-30 ^ {circ} $相位在刮除等离子体中激发出千伏每米的同轴站立模式,并显示出磁场对准的耳语画廊类型模式等离子边缘。

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