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Parasitic coupling of ion Bernstein waves with ICRF fast wave excitation in tokamaks

机译:托卡马克中离子伯恩斯坦波与ICRF快速波激发的寄生耦合

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摘要

Summary form only given, as follows. Analysis and computer simulation is presented for investigating the coupling of ion cyclotron range of frequency (ICRF) waves to tokamak plasmas using phased coil antenna arrays. The model accounts for three-dimensional antenna, and feeder current effects, an idealized Faraday shield, an antenna cavity which is finite in all three dimensions and warm plasma effects. The WIGS computer code, developed by the authors, is used to calculate the antenna radiation resistance and the spectrum of the ICRF power coupled to the plasma. Parasitic coupling to the ion Bernstein wave during fast wave heating experiments is investigated. Parasitic coupling to the ion Bernstein wave in the edge plasma region is shown to be important for low parallel wavenumbers during minority ion heating with large gradients in the plasma density near the edge of the plasma. The sensitivity of the parasitic coupling to changes in the cavity dimensions, current feeder configuration, coil current phase velocity and edge plasma profiles is discussed. The fraction of the launched power coupled to the ion Bernstein wave is to vary substantially with the antenna and plasma parameters and the phase difference between the excitation of adjacent antenna coils. Specific results are shown for the antenna and plasma parameters of the TFTR and JET tokamaks.
机译:仅给出摘要表格,如下。提出了分析和计算机仿真,以研究使用相控线圈天线阵列将离子回旋加速器的频率范围(ICRF)波耦合到托卡马克等离子体。该模型考虑了三维天线,馈线电流效应,理想化的法拉第屏蔽,在三个维度上均有限的天线腔以及温暖的等离子体效应。作者开发的WIGS计算机代码用于计算天线辐射电阻和耦合至等离子体的ICRF功率的频谱。研究了快速波加热实验过程中离子伯恩斯坦波的寄生耦合。在少数离子加热期间,在等离子体边缘附近的等离子体密度具有较大的梯度时,对于边缘等离子体区域中的离子伯恩斯坦波的寄生耦合显示出重要的信号,这对于低平​​行波数很重要。讨论了寄生耦合对腔尺寸,电流馈线配置,线圈电流相速度和边缘等离子体轮廓变化的敏感性。耦合到离子伯恩斯坦波的发射功率的一部分将随着天线和等离子体参数以及相邻天线线圈的激励之间的相位差而显着变化。显示了TFTR和JET托卡马克的天线和等离子体参数的特定结果。

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