Li F, Yang Z J, Gao L, Fu C P
International Joint Research Laboratory of Magnetic Confinement Fusion and Plasma Physics, State Key Laboratory of Advanced Electromagnetic Engineering and Technology, School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China.
Rev Sci Instrum. 2021 Apr 1;92(4):043503. doi: 10.1063/5.0040988.
Edge turbulence is important for plasma confinement, so the gas puffing imaging (GPI) diagnostic was proposed on the J-TEXT tokamak for the two-dimensional measurement of turbulence in the edge region. GPI is a diagnostic of plasma turbulence that uses a puff of neutral gas at the plasma edge to increase the local visible light emission for improved space-time resolution of plasma fluctuations. Considering the conditions of J-TEXT, the observation area is 21° away from the position of the optical system in the toroidal direction, and the observation area is 10 cm × 10 cm inside and outside the last closed flux surface. To have a lower divergence of the gas flow, the gas puff nozzle is specially designed. An interface has been developed for operation. To photograph the line radiation generated by the neutral gas cloud along the magnetic field lines, the optical system is designed. It is composed of a quartz glass, mirrors, commercial lenses, filters, and high-speed cameras. The high-speed camera can capture the line radiation with a speed up to 180 000 frames/s with 256 pixels × 256 pixels and an exposure time of 5 µs. In a recent experiment, the new GPI diagnostic has obtained some preliminary pictures.
边界湍流对等离子体约束很重要,因此在J-TEXT托卡马克装置上提出了气体喷注成像(GPI)诊断方法,用于对边界区域的湍流进行二维测量。GPI是一种等离子体湍流诊断方法,它利用等离子体边界处的一股中性气体来增加局部可见光发射,以提高等离子体涨落的时空分辨率。考虑到J-TEXT的条件,观测区域在环向方向上距离光学系统位置21°,且在最后封闭磁通面内外的观测区域为10 cm×10 cm。为了使气流发散度更低,专门设计了气体喷注喷嘴。已经开发了一个用于操作的接口。为了拍摄沿磁力线由中性气体云产生的线辐射,设计了光学系统。它由石英玻璃、镜子、商用透镜、滤光片和高速相机组成。高速相机能够以高达180 000帧/秒的速度捕捉线辐射,像素为256×256,曝光时间为5微秒。在最近的一次实验中,新的GPI诊断方法获得了一些初步图像。