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基于阿尔卡特C-Mod托卡马克表面热通量实时测量的偏滤器杂质注入反馈系统。

Feedback system for divertor impurity seeding based on real-time measurements of surface heat flux in the Alcator C-Mod tokamak.

作者信息

Brunner D, Burke W, Kuang A Q, LaBombard B, Lipschultz B, Wolfe S

机构信息

Plasma Science and Fusion Center, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

Department of Physics, University of York, Heslington, York YO10 5DD, United Kingdom.

出版信息

Rev Sci Instrum. 2016 Feb;87(2):023504. doi: 10.1063/1.4941047.

Abstract

Mitigation of the intense heat flux to the divertor is one of the outstanding problems in fusion energy. One technique that has shown promise is impurity seeding, i.e., the injection of low-Z gaseous impurities (typically N2 or Ne) to radiate and dissipate the power before it arrives to the divertor target plate. To this end, the Alcator C-Mod team has created a first-of-its-kind feedback system to control the injection of seed gas based on real-time surface heat flux measurements. Surface thermocouples provide real-time measurements of the surface temperature response to the plasma heat flux. The surface temperature measurements are inputted into an analog computer that "solves" the 1-D heat transport equation to deliver accurate, real-time signals of the surface heat flux. The surface heat flux signals are sent to the C-Mod digital plasma control system, which uses a proportional-integral-derivative (PID) algorithm to control the duty cycle demand to a pulse width modulated piezo valve, which in turn controls the injection of gas into the private flux region of the C-Mod divertor. This paper presents the design and implementation of this new feedback system as well as initial results using it to control divertor heat flux.

摘要

减轻流向偏滤器的强热通量是聚变能源领域的突出问题之一。一种已展现出前景的技术是杂质注入,即注入低Z气态杂质(通常是N₂或Ne),以便在能量到达偏滤器靶板之前通过辐射将其耗散掉。为此,阿尔卡特C-Mod团队创建了首个基于实时表面热通量测量来控制种子气体注入的反馈系统。表面热电偶可对表面温度对等离子体热通量的响应进行实时测量。表面温度测量值被输入到一台模拟计算机中,该计算机“求解”一维热传输方程,以给出准确的表面热通量实时信号。表面热通量信号被发送至C-Mod数字等离子体控制系统,该系统使用比例积分微分(PID)算法来控制对脉宽调制压电阀的占空比需求,进而控制向C-Mod偏滤器的私密通量区域注入气体。本文介绍了这种新型反馈系统的设计与实现,以及使用该系统控制偏滤器热通量的初步结果。

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