DIII-D上的快速可见相机转向成像诊断

A. Roquemore, R. Maingi, C. Lasnier, N. Nishino, T. Evans, M. Fenstermacher, A. Nagy
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引用次数: 0

摘要

在最近的运动中,在国家球面环面实验(NSTX)上应用光子ultima SE快速分幅相机成像分流现象时,证明了它的强大诊断能力。NSTX导流器研究的活跃领域包括EDGE局域模式(elm)[1]类型的识别、粉尘迁移、杂质行为以及与湍流相关的一些现象。为了比较低长宽比和高长宽比等离子体中的这种边缘和分流现象,多机构合作开发了NSTX和DIII-D上的快速可见成像。更具体地说,该合作提议比较NSTX小V型ELM状态[2]和在DIII-D[3]上外部磁扰动抑制I型ELM期间观察到的剩余ELM。作为合作努力的一部分,最近在DIII-D上安装了光子相机,其切线视图与NSTX上实现的视图相似,可以直接比较两台机器。利用现有的光学器件耦合了分流器真空紫外UVTV系统的可见光谱输出,从而促进了快速实施,该系统具有类似于为分流器切向电视摄像机[4]开发的视图。安装了一个遥控滤光轮,以及DIII-D安装所需的辐射屏蔽。本文介绍了摄像机的安装和初始操作,并给出了DIII-D分流器的第一批图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Fast visible camera Divertor-imaging diagnostic on DIII-D
In recent campaigns, the photron ultima SE fast framing camera has proven to be a powerful diagnostic when applied to imaging divertor phenomena on the national spherical torus experiment (NSTX). Active areas of NSTX divertor research addressed with the fast camera include identification of types of EDGE localized modes (ELMs)[1], dust migration, impurity behavior and a number of phenomena related to turbulence. To compare such edge and divertor phenomena in low and high aspect ratio plasmas, a multi-institutional collaboration was developed for fast visible imaging on NSTX and DIII-D. More specifically, the collaboration was proposed to compare the NSTX small type V ELM regime[2] and the residual ELMs observed during Type I ELM suppression with external magnetic perturbations on DIII-D[3]. As part of the collaboration effort, the photron camera was installed recently on DIII-D with a tangential view similar to the view implemented on NSTX, enabling a direct comparison between the two machines. The rapid implementation was facilitated by utilization of the existing optics that coupled the visible spectral output from the divertor vacuum ultraviolet UVTV system, which has a view similar to the view developed for the divertor tangential TV camera[4]. A remote controlled filter wheel was implemented, as was the radiation shield required for the DIII-D installation. The installation and initial operation of the camera are described in this paper, and the first images from the DIII-D divertor are presented.
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