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Development of high power window prototypes for ECH&CD launchers

机译:为ECH&CD发射器开发高功率窗口原型

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Torus window prototypes for electron cyclotron (EC) heating and current drive (H&CD) systems are developed for different launcher concepts in accordance with the specific transmission requirements. For ITER, single-disk windows are designed for 2MW power transmission at fixed frequency (170GHz) in two variants. For the RS launcher, the remote steering unit is placed close to the torus window in the launcher back-end which calls for a large window aperture (95 mm) to avoid beam vignetting at the extreme steering angles of ± 12°. For the FS launcher with the steering mechanism placed in the front shield of the launcher, the aperture and the disk thickness are reduced as the torus window is integrated into a cylindrical waveguide configuration with an inner diameter of 63.5 mm. The reduced absorbed power and cooling paths allow to consider indirect cooling as an alternative to edge cooling which eliminates the risk of tritium contact to the cooling water in case of crack formation in the diamond disk. For the multifrequency torus window at ASDEX Upgrade (aperture: 80 mm), a double-disk configuration is realised with the disk separation of 5 mm, fine tuneable over ±1 mm. Prototypes of the high power windows were manufactured. First results of the current fhermo-hydraulic and of the mm-wave performance tests support the feasibility of the concepts. For the ITER torus windows, the tool development is described which provides on-site replacement by automated cutting and welding tools.
机译:根据特定的传输要求,针对不同的发射器概念开发了用于电子回旋加速器(EC)和电流驱动(H&CD)系统的Torus窗口原型。对于ITER,单磁盘窗口设计有两种变体,用于以固定频率(170GHz)传输2MW的功率。对于RS发射器,遥控转向器靠近发射器后端的圆环窗口放置,这需要较大的窗口孔径(95毫米),以避免光束在±12°的极端转向角处渐晕。对于将操纵机构置于发射器前罩中的FS发射器,由于将圆环窗口集成到内径为63.5 mm的圆柱形波导结构中,因此减小了孔径和圆盘厚度。减少的吸收功率和冷却​​路径允许考虑使用间接冷却来替代边缘冷却,从而消除了在金刚石盘中形成裂纹的情况下contact与冷却水接触的风险。对于ASDEX升级版的多频环形窗口(孔径:80毫米),实现了双磁盘配置,磁盘间隔为5毫米,可在±1毫米范围内进行微调。制造了高功率窗户的原型。当前的液力液压和毫米波性能测试的初步结果支持了该概念的可行性。对于ITER圆环窗,描述了工具开发,该工具开发可通过自动切割和焊接工具进行现场更换。

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