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Mechanical design of the TFTR poloidal rotation diagnostic

机译:TFTR极向旋转诊断的机械设计

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In the spring of 1997, a poloidal rotation diagnostic was installed on TFTR for the final DT experiments. This spectroscopic diagnostic was designed to measure the poloidal velocity to determine the radial electric field in the plasma. The collecting optics consist of a quartz window vacuum interface, two vertically opposed fan-shaped arrays of 1 mm quartz fibers and lens system. The design requirements, as well as short design to implementation schedule, led to some unique design features. To minimize errors introduced by the toroidal velocity component of the measurement, tight position requirements were placed on the alignment of the fiber optic assemblies relative to the tokamak and to each other. Activation and contamination of the TFTR vacuum vessel presented unique design issues for installation and precise alignment of the optics to 1 part in 1000 from outside the vacuum vessel. The design progressed from concept to implementation in less than six months requiring a relatively simple design.
机译:1997年春季,在TFTR上安装了一个极向旋转诊断仪,用于最终的DT实验。该光谱诊断仪设计用于测量极向速度以确定等离子体中的径向电场。收集光学系统由一个石英窗口真空接口,两个垂直相对的扇形1 mm石英纤维阵列和透镜系统组成。设计要求以及对实施时间表的简短设计导致了一些独特的设计功能。为了使测量的环速度分量引入的误差最小,对光纤组件相对于托卡马克以及彼此之间的对准提出了严格的位置要求。 TFTR真空容器的激活和污染提出了独特的设计问题,用于从真空容器外部安装光学组件并将其精确对准1000个零件中的1个。设计从概念发展到实施,不到六个月就需要一个相对简单的设计。

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