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Development and Preliminary Commissioning Results of a Long Pulse 140 GHz ECRH System on EAST Tokamak (Invited)

机译:EAST Tokamak上的长脉冲140 GHz ECRH系统的开发和初步调试结果(已邀请)

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摘要

A long pulse electron cyclotron resonance heating (ECRH) system has been developed to meet the requirements of steady-state operation for the EAST superconducting tokamak, and the first EC wave was successfully injected into plasma during the 2015 spring campaign. The system is mainly composed of four 140 GHz gyrotron systems, 4 ITER-Like transmission lines, 4 independent channel launchers and corresponding power supplies, a water cooling, control & inter-lock system etc. Each gyrotron is expected to deliver a maximum power of 1 MW and be operated at 100-1000 s pulse lengths. The No.1 and No.2 gyrotron systems have been installed. In the initial commissioning, a series of parameters of 1 MW 1 s, 900 kW 10 s, 800 kW 95 s and 650 kW 753 s have been demonstrated successfully on the No.1 gyrotron system based on calorimetric dummy load measurements. Significant plasma heating and MHD instability suppression effects were observed in EAST experiments. In addition, high confinement (H-mode) discharges triggered by ECRH were obtained.
机译:已开发出长脉冲电子回旋共振加热(ECRH)系统,以满足EAST超导托卡马克稳态运行的要求,并且在2015年春季运动中成功将第一波EC波注入等离子体。该系统主要由四个140 GHz旋流器系统,4条ITER样传输线,4条独立通道发射器和相应的电源,水冷却,控制和互锁系统等组成。每个旋流器预计将提供最大功率为1 MW,可在100-1000 s的脉冲长度下运行。已经安装了1号和2号回旋管系统。在首次调试中,基于量热模拟负载测量,已经在1号回旋管系统上成功演示了1 MW 1 s,900 kW 10 s,800 kW 95 s和650 kW 753 s的一系列参数。在EAST实验中观察到了明显的等离子体加热和MHD不稳定性抑制作用。另外,获得了由ECRH触发的高限制放电(H模式)。

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