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Progress in the 10-MW 140-GHz ECH System for the Stellarator W7-X

机译:Stellarator W7-X的10兆瓦140 GHz ECH系统的进展

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During the last years, electron cyclotron heating (ECH) was proven to be one of the most attractive heating schemes for stellarators because it provides net-current-free plasma startup and heating. Both the stellarator Wendelstein 7-X (W7-X), which is under construction at the Max-Planck-Institut fÜr Plasmaphysik, Greifswald, Germany, and the International Thermonuclear Experimental Reactor (ITER) tokamak, which will be built in Cadarache, France, will be equipped with a strong ECH and current-drive system. Both systems are comparable in frequency and have continuous-wave capability (140 GHz, 10 MW for W7-X and 170 GHz, 24 MW for ITER). The commissioning of the ECH plant for W7-X is well underway; the status of the project and the first integrated full-power test results from two modules are reported and may provide valuable input for the ITER plant. The ten gyrotrons at W7-X will be arranged in two subgroups symmetrically to a central beam duct in the ECH hall. The RF wave of each subgroup will be combined and transmitted by a purely optical multibeam-waveguide (MBWG) transmission line from the gyrotrons to the torus. The combination of five1 MW gyrotron beams to one beam line with a power of 5 MW reduces the complexity of the system considerably. The single- and MBWG mirrors and the polarizers have been manufactured. Cold tests of a full-size uncooled prototype line delivered an efficiency exceeding 90%. The microwave power will be launched to the plasma through ten chemical-vapor-deposited-diamond barrier windows and in-vessel quasi-optical plug-in launchers, allowing each 1-MW RF beam to be steered independently. The polarization, as well as the poloidal and toroidal launch angles, will be adjusted individually to provide optimum conditions for different heating and current-drive scenarios.
机译:在过去的几年中,电子回旋加速器(ECH)被证明是恒星发生器最有吸引力的加热方案之一,因为它提供了无净电流的等离子体启动和加热。在德国格赖夫斯瓦尔德的马克斯-普朗克研究所等离子体建造中的恒星编排机Wendelstein 7-X(W7-X),以及将在法国卡达拉奇建造的国际热核实验堆(ITER)托卡马克。 ,将配备强大的ECH和电流驱动系统。两种系统的频率均相当,并具有连续波能力(140 GHz,W7-X为10 MW,ITER为170 GHz,24 MW)。 W7-X的ECH工厂的调试工作正在进行中。报告了项目的状态以及两个模块的第一个综合全功率测试结果,这些数据可能为ITER工厂提供宝贵的投入。 W7-X的十个回旋管将相对于ECH大厅中的中心电子束对称地分成两个子组。每个子组的RF波将通过纯光学多光束波导(MBWG)传输线组合并从回旋管传输到圆环。将5兆瓦的回旋管光束组合成一条功率为5兆瓦的光束,大大降低了系统的复杂性。已经制造了单面和MBWG反射镜以及偏光镜。全尺寸未冷却原型生产线的冷测试效率超过90%。微波功率将通过十个化学气相沉积金刚石屏障窗口和船内准光学插入式发射器发射到等离子体,从而可以独立控制每个1 MW射频束。极化以及极化和环形发射角将单独调整,以为不同的加热和电流驱动情况提供最佳条件。

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