用于 DTT 的可见光谱诊断的概念设计

Andrea Belpane, Lorella Carraro, Alessandro Fassina, M. Cavedon, Luca Senni
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引用次数: 0

摘要

介绍了为新托卡马克 DTT(憩息器托卡马克试验)设计的用于泽夫径向剖面测量和憩息器可见成像光谱的可见光谱诊断项目。为了应对 DTT 的几何限制,并最大限度地减少接入端口内的诊断体积,我们提出了一个将两个系统集成在一起的紧凑型解决方案。泽夫径向剖面将通过可见光谱范围内的轫致辐射测量进行评估,沿极坐标平面上部的十条视线(LoS)获取光线。等离子体辐射将被聚焦到光纤上,并由光纤传送到光谱实验室。第二套设备有一个穿过等离子体中心并位于赤道平面上的环形 LoS,将在较长的路径上测量平均 Zeff,从而最大限度地减少等离子体边缘发射的线/带对连续光谱的污染。分流器成像系统的设计目的是测量杂质和主要气体的流入量,监测等离子体的位置和杂质的动力学,并跟踪等离子体脱离的演变过程。该项目的目标是最大限度地覆盖分流器区域。收集到的光线可以在放置于环形大厅外的不同分光仪和干涉滤波器装置之间共享,以方便改变它们的设置。该系统由上下两台望远镜组成,可以垂直或切向观察 DTT 分流器区域。该诊断系统提供了一个独特而紧凑的解决方案,旨在应对下一代托卡马克聚变装置的苛刻限制,集成了用于广泛杂质表征和岔流物理多功能研究的重要工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conceptual design of Visible Spectroscopy diagnostics for DTT
The project of the Visible Spectroscopy diagnostics for the Zeff radial profile measurement and for the divertor visible imaging spectroscopy, designed for the new tokamak DTT (Divertor Tokamak Test), is presented. To deal with the geometrical constrains of DTT and to minimize the diagnostics volume inside the access port, an integrated and compact solution hosting the two systems has been proposed. The Zeff radial profile will be evaluated from the Bremsstrahlung radiation measurement in the visible spectral range, acquiring light along ten Lines of Sight (LoS) in the upper part of the poloidal plane. The plasma emission will be focused on optical fibers, which will carry it to the spectroscopy laboratory. A second equipment, with a single toroidal LoS crossing the plasma centre and laying on the equatorial plane, will measure the average Zeff on a longer path, minimizing the incidental continuum spectrum contaminations by lines/bands emitted from the plasma edge. The divertor imaging system is designed to measure impurity and main gas influxes, to monitor the plasma position and kinetics of impurities, and to follow the plasma detachment evolution. The project aims at obtaining the maximum coverage of the divertor region. The collected light can be shared among different spectrometers and interferential filter devices placed outside the torus hall to easily change their setup. The system is composed of two telescopes, an upper and a lower one, allowing both a perpendicular and a tangential view of the DTT divertor region. This diagnostic offers a unique and compact solution designed to cope, the demanding constraints of this next-generation tokamak fusion devices, integrating essential tools for wide-ranging impurity characterization and versatile invesitgation of divertor physics.
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