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Y Theoretical Analysis of Triple Liquid Stub Tuner Impedance Matching for ICRH on Tokamaks

机译:托卡马克上ICRH的三重液体短管调谐器阻抗匹配的Y理论分析。

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摘要

The impedance matching is crucial for continuous wave operation of ion cyclotron resonance heating (ICRH) antennae with high power injection into plasmas. A sudden increase in the reflected radio frequency power due to an impedance mismatch of the ICRH system is an issue which must be solved for present-day and future fusion reactors. This paper presents a method for theoretical analysis of ICRH system impedance matching for a triple liquid stub tuner under plasma operational conditions. The relationship of the antenna input impedance with the plasma parameters and operating frequency is first obtained using a global solution. Then, the relations of the plasma parameters and operating frequency with the matching liquid heights are indirectly obtained through numerical simulation according to transmission line theory and matching conditions. The method provides an alternative theoretical method, rather than measurements, to study triple liquid stub tuner impedance matching for ICRH, which may be beneficial for the design of ICRH systems on tokamaks.
机译:阻抗匹配对于离子回旋共振加热(IC​​RH)天线在高功率注入等离子体中的连续波操作至关重要。由于当今和未来的聚变反应堆必须解决的问题是由于ICRH系统的阻抗不匹配而导致的反射射频功率的突然增加。本文提出了一种在等离子操作条件下对三液短管调谐器的ICRH系统阻抗匹配进行理论分析的方法。首先使用全局解获得天线输入阻抗与等离子体参数和工作频率的关系。然后,根据传输线理论和匹配条件,通过数值模拟间接获得了血浆参数和工作频率与匹配液体高度的关系。该方法提供了一种替代性的理论方法,而不是测量方法,来研究ICRH的三重液位调谐器阻抗匹配,这可能对在托卡马克上设计ICRH系统有益。

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