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The Dedicated ICRH System for the Stellarator Wendelstein 7-X

机译:The Stellarator Wendelstein 7-X的专用ICRH系统

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The current status of the mechanical and electromagnetic design for the íCRF antenna system for W7-X is presented. Two antenna plugins are discussed: one consisting of a pair of straps with pre-matching to cover the first frequency band 25-38 MHz and a second one consisting of two short strap triplets to cover a frequency band around 76 MHz. This paper focusses on the two strap antenna for the lower frequency band. Power coupling of the antenna to a reference plasma profile is studied with the help of the codes TOPICA and Microwave Studio, that deliver the scattering matrix needed for the optimization of the geometric parameters of the straps and antenna box. Radiation power spectra for different phasings of the two straps are obtained using the code ANTITER II and different heating scenarii are discussed. The potential for heating, fast particle generation and current drive is discussed. The problem of RF coupling through the plasma edge and of edge power deposition is summarized. The system contains a prematching capacitor to limit the maximum voltage in the system, and the large mutual coupling between the 2 straps is counterbalanced by the use of a decoupler. The mechanical design highlights the challenges encountered with this antenna: adaptation to a large variety of plasma configurations, the limited space within the port to accommodate the necessary matching components and the watercooling needed for long pulse operation.
机译:提出了用于W7-X的IRNCRF天线系统的机械和电磁设计的当前状态。讨论了两个天线插件:由一对带有预匹配的带子组成,以覆盖第一频带25-38MHz和由两个短带三联网组成的第二个,以覆盖大约76MHz的频带。本文侧重于下频带的两个带天线。利用代码Topica和微波工作室的帮助,研究了天线到参考等离子体轮廓的电力耦合,其提供了优化带子和天线盒的几何参数所需的散射矩阵。使用代码逆行器II获得针对两个带的不同示量的辐射功率光谱,并且讨论了不同的加热场景。讨论了加热,快速粒子生成和电流驱动的潜力。总结了通过等离子体边缘和边缘功率沉积的RF耦合的问题。该系统包含一个超级电容器,以限制系统中的最大电压,并且通过使用解耦器来平衡2带之间的大的相互耦合。机械设计突出了该天线遇到的挑战:适应各种等离子体配置,端口内的有限空间,以容纳长脉冲操作所需的必要匹配部件和水中。

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