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Design of Beam Tunnel for 42 GHz, 200 kW Gyrotron

机译:42 GHz,200 kW回旋管的束隧道设计

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A beam tunnel for a 42 GHz, 200 kW gyrotron for an Indian TOKAMAK system has been designed. The initial design of the beam tunnel has been carried out on the basis of the required electron beam parameters at the interaction cavity and the electron beam simulation of the magnetron injection gun. The design optimization of the beam tunnel has been done with the help of 3-D simulation software CST-Microwave Studio. In the simulation, the absorption, the reflection and the transmission of RF power by the beam tunnel have been analyzed. Three different lossy ceramics, Al2O3-SiC, AlN-SiC and BeO-SiC have been investigated during the simulation. The simulation results obtained with CST-Microwave Studio have been validated with another 3-D simulation software HFSS. The Q value of the beam tunnel for different ceramic material has also been analyzed to investigate the parasitic mode excitation in the beam tunnel.
机译:设计了用于印度TOKAMAK系统的42 GHz,200 kW回旋管的束隧道。束流隧道的初始设计是根据相互作用腔处所需的电子束参数以及磁控管注入枪的电子束模拟进行的。在3D模拟软件CST-Microwave Studio的帮助下完成了光束隧道的设计优化。在仿真中,分析了束隧道对射频功率的吸收,反射和传输。在模拟过程中,研究了三种不同的有损陶瓷,Al2O3-SiC,AlN-SiC和BeO-SiC。通过CST-Microwave Studio获得的仿真结果已通过另一个3-D仿真软件HFSS进行了验证。还分析了不同陶瓷材料的束隧道的Q值,以研究束隧道中的寄生模式激发。

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