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Overview of the ITER EC upper launcher

机译:ITER EC上层发射器概述

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The ITER electron cyclotron (EC) upper port antenna (or launcher) is nearing completion of the detailed design stage and the final build-to-print design stage will soon start. The main objective of this launcher is to drive current locally to stabilize the neoclassical tearing modes (NTMs) (depositing ECCD inside of the island that forms on either the q = 3/2 or 2 rational magnetic flux surfaces) and control the sawtooth instability (deposit ECCD near the q = 1 surface). The launcher should be capable of steering the focused beam deposition location to the resonant flux surface over the range in which the q = 1, 3/2 and 2 surfaces are expected to be found for various plasma equilibria susceptible to the onset of NTMs and sawteeth. The aim of this paper is to provide the design status of the principal components that make up the launcher: port plug, mm-wave system and shield block components. The port plug represents the chamber that provides a rigid support structure that houses the mm-wave and shield blocks. The mm-wave system comprises the components used to guide the RF beams through the port plug structure and refocus the beams far into the plasma. The shield block components are used to attenuate the nuclear radiation from the burning plasma, protecting the fragile in-port components and reducing the neutron streaming through the port assembly. The design of these three subsystems is described; in addition, the relevant thermo-mechanical and electro-magnetic analyses are reviewed for critical design issues.
机译:ITER电子回旋加速器(EC)上端口天线(或发射器)即将完成详细的设计阶段,最终的从设计到印刷的设计阶段也将很快开始。该发射器的主要目的是局部驱动电流,以稳定新古典撕裂模式(NTM)(将ECCD沉积在q = 3/2或2个有理磁通量表面上形成的岛内)并控制锯齿不稳定性(在q = 1的表面附近沉积ECCD)。发射器应该能够将聚焦光束的沉积位置控制在谐振磁通量表面上的范围内,在该范围内,对于易受NTM和锯齿影响的各种等离子体平衡,预计将发现q = 1、3 / 2和2个表面。本文的目的是提供组成发射器的主要组件的设计状态:端口插头,毫米波系统和屏蔽块组件。端口插头代表腔室,该腔室提供了容纳毫米波和屏蔽块的刚性支撑结构。毫米波系统包括一些组件,这些组件用于引导RF光束穿过端口插头结构,并将光束重新聚焦到等离子体中。屏蔽块组件用于衰减燃烧中的等离子体产生的核辐射,保护易碎的入口组件并减少中子流过端口组件。描述了这三个子系统的设计。此外,还审查了有关热机械和电磁分析的关键设计问题。

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