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首页> 外文期刊>Plasma Science, IEEE Transactions on >42-GHz/500-kW Electron Cyclotron Resonance Heating System on Tokamak SST-1
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42-GHz/500-kW Electron Cyclotron Resonance Heating System on Tokamak SST-1

机译:托卡马克SST-1上的42 GHz / 500 kW电子回旋共振加热系统

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The 42-GHz electron cyclotron resonance heating (ECRH) system on SST-1 is used to carry out ECRH-assisted preionization, breakdown, start-up, and heating experiments at 0.75-T (second harmonic) and 1.5-T (fundamental harmonic) operation. The gyrotron delivers 500-kW power at 42-GHz frequency at −50-kV beam voltage, 20-A beam current, and 19-kV anode voltage. The gyrotron has been commissioned successfully on dummy load for full parameters (500 kW/500 ms). The transmission line consists of matching optic unit, circular corrugated waveguide, miter bend with bidirectional coupler, waveguide switches, polarizer, bellows, dc breaks, and an uptaper. Approximately 20-m-long transmission line is used to launch the power from gyrotron to tokamak, and the burn pattern at the exit of line near the tokamak ensures a good Gaussian beam. A composite launcher [consisting of four mirrors (two profiled and two plane), two gate valves, and two vacuum barrier windows] is used to connect two ECRH systems (42 and 82.6 GHz). The 82.6-GHz/200-kW ECRH system is also planned for SST-1 to carry out experiments at 3-T magnetic field. The 42-GHz ECRH system has been commissioned with tokamak SST-1, ECRH power has been launched in tokamak, and successful ECRH-assisted breakdown is achieved at second harmonic.
机译:SST-1上的42 GHz电子回旋共振加热(ECRH)系统用于在0.75-T(二次谐波)和1.5-T(基本谐波)下进行ECRH辅助的预离子化,击穿,启动和加热实验)操作。旋流器在−50 kV束电压,20 A束电流和19 kV阳极电压下以42 GHz频率提供500 kW功率。陀螺仪已在全负荷(500 kW / 500 ms)的虚拟负载下成功调试。传输线包括匹配的光学单元,圆形波纹波导,带有双向耦合器的斜接弯头,波导开关,偏振器,波纹管,直流断路和上光带。大约20米长的传输线用于从回旋管向托卡马克发射功率,并且托卡马克附近线路出口处的燃烧模式确保了良好的高斯光束。复合发射器(由四个反射镜(两个轮廓和两个平面),两个闸阀和两个真空屏障窗口组成)用于连接两个ECRH系统(42和82.6 GHz)。还计划为SST-1设计82.6 GHz / 200 kW ECRH系统,以在3-T磁场下进行实验。 42 GHz ECRH系统已经使用托卡马克SST-1进行调试,ECRH电源已在托卡马克中启动,并且成功实现了ECRH辅助二次谐波的击穿。

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