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Design and development of EC HCD antenna mirrors for ITER

机译:EC H&CD天线镜的设计与开发ITER

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The steering mirrors of the ITER EC H&CD antenna (250 mm x 350 mm x 30mm) are designed to reflect 20 MW millimeter (mm)-wave beams and to control their injection angle into plasma. The mirror would be exposed to high-energy neutrons and heat flux from plasma and also heated by incident wave beams. The result of thermo-mechanical analysis indicates that the mirror design with copper alloys (dispersion strengthened copper or copper chrome zirconium) plate with stainless steel (SS316) cooling tubes inside is considered to be acceptable. Since the mirror is rotated to change the injection angle of mm-wave beams, a flexible tube to supply cooling water into the steering mirror is necessary. A mock-up of the mirror for a 90° miter bend was fabricated and the mm-wave transmission with power/pulse length of 420 kW/4.7 s was carried out. Temperature increase agrees with the expected value. Ohmic loss is estimated to be 0.21% of the incident power, which agrees with the calculation based on the electrical resistivity of DSCu at 1.8 x 10~(-8) Ωm. The result also indicates 1 MW, CW transmission capability of the miter bend.
机译:的ITER EC H&CD天线(250毫米×350毫米X30毫米)的转向反射镜被设计为反射20 MW毫米(mm)-wave束并控制其喷射角为等离子体。反射镜将暴露于高能中子和从血浆中的热通量,并且还通过入射波束加热。热机械分析的结果表明,反射镜设计用铜合金(弥散强化铜或铜铬锆)板不锈钢(SS316)的冷却管内被认为是可接受的。由于反射镜旋转,以改变毫米波的喷射角光束,柔性管供给冷却水到转向镜是必要的。甲模拟式反射镜在90°斜接弯管制作,并用420千瓦/ 4.7的电源/脉冲长度的毫米波传输进行。温度升高同意的预期值。欧姆损耗估计为与入射功率的0.21%,这与基于DSCU中的1.8×10(-8)Ωm的电阻率的计算一致。该结果还表明1 MW,斜接弯管的CW传输能力。

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