A. G. Razdobarin, Ya. R. Shubin, A. A. Belokur, D. L. Bogachev, D. I. Elets, O. S. Medvedev, E. E. Mukhin, L. A. Snigirev, I. V. Alekseenko
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引用次数: 0
摘要
摘要 提出了采用反应堆技术 TRT 诊断托卡马克第一壁和岔流板侵蚀的概念设计。本文提出了基于以下系统的诊断综合系统的构建原则:激光雷达、双波长数字全息干涉仪和主动激光红外热成像。制定了一种光学方案,用于将输入激光辐射和收集诊断系统散射光的光路结合起来。为了查看第一面墙的最大面积,提出了对第一面墙和分流器表面进行光学扫描的方案。在光学模拟的基础上,构建了第一面墙照射区域内干涉测量激光辐射的功率密度和相位的空间分布,并确定了用于红外热成像和激光雷达诊断的光场尺寸和功率密度。提出了图像形成方案,并确定了干涉测量法和红外热成像法的空间分辨率。通过实验研究了 ITER 分流器包层模型上的光散射函数。根据所有三种诊断方法的实验数据计算了所收集信号的能量,并提出了对诊断设备的要求。
Conceptual Project for Diagnostics of Erosion of the First Wall and Divertor of the Tokamak with Reactor Technologies TRT
A conceptual design for diagnosing erosion of the first wall and divertor plates of a tokamak with reactor technologies TRT is proposed. The principles of constructing a diagnostic complex based on the following systems are developed: laser radar, dual-wavelength digital holographic interferometry and active laser IR thermography. An optical scheme is developed for combining the optical paths to input laser radiation and collect scattered light from diagnostic systems. To view the maximum area of the first wall, a scheme for optical scanning of the surface of the first wall and divertor is proposed. Based on optical simulation, the spatial distribution of the power density and phase of interferometry laser radiation in the illuminated region of the first wall is constructed, and the dimensions of the light fields and power density for IR thermography and laser radar diagnostics are determined. An image formation scheme is proposed and the spatial resolution is determined for interferometry and IR thermography methods. The light scattering function on models of the ITER divertor cladding is studied experimentally. The energy of the collected signal is calculated on the basis on the experimental data for all three diagnostic methods and the requirements for the diagnostic equipment are formulated.
期刊介绍:
Plasma Physics Reports is a peer reviewed journal devoted to plasma physics. The journal covers the following topics: high-temperature plasma physics related to the problem of controlled nuclear fusion based on magnetic and inertial confinement; physics of cosmic plasma, including magnetosphere plasma, sun and stellar plasma, etc.; gas discharge plasma and plasma generated by laser and particle beams. The journal also publishes papers on such related topics as plasma electronics, generation of radiation in plasma, and plasma diagnostics. As well as other original communications, the journal publishes topical reviews and conference proceedings.