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Numerical design and optimization of cooling system for 2 MeV traveling wave accelerator

机译:2 MeV行波加速器冷却系统的数值设计与优化

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Eliminating or reducing thermal deformation of an accelerator structure (caused by microwave power dissipated on the walls of RF cavities) to insure resonance frequency is an important topic in the design of the structure. A civil accelerator for killing anthrax bacilli must be small and compact, and so must its cooling system. This paper introduces the design and optimization of a cooling structure for an 0.57 m long, 2 kW, disk-loaded waveguide accelerator structure, for which the temperature distribution is required to be 30/spl plusmn/3/spl deg/C. All the parameters have been calculated and optimized by means of FEM (the Finite Element Method). The simulation is accomplished with software called I-DEAS (Integrated Design, Engineering, Analysis System). An optimized structure with a jacket style cooling chamber has been designed. The outside wall of the jacket is made of stainless steel and its external diameter is /spl phi/ 118 mm. The flux of the cooling water is as small as 0.45 ton/hour. As a result, the temperature nonuniformity of the accelerator tube is better than /spl plusmn/2.5/spl deg/C. The system is also very robust against surrounding temperature shifts. The cooling system has been installed in a 2 MeV accelerator, and the facility is running well.
机译:消除或减少加速器结构的热变形(由RF腔壁上散发的微波功率引起)以确保谐振频率是结构设计中的重要课题。用于杀死炭疽杆菌的民用加速器必须小巧紧凑,冷却系统也必须如此。本文介绍了0.57 m长,2 kW盘装波导加速器结构的冷却结构的设计和优化,其温度分布要求为30 / spl plusmn / 3 / spl deg / C。所有参数均已通过FEM(有限元方法)进行了计算和优化。仿真是通过称为I-DEAS(集成设计,工程,分析系统)的软件完成的。设计了带有夹套式冷却室的优化结构。外套的外壁由不锈钢制成,其外径为/ spl phi / 118毫米。冷却水的流量低至0.45吨/小时。结果,加速器管的温度不均匀性好于/ spl plusmn / 2.5 / spl deg / C。该系统在应对周围温度变化方面也非常强大。冷却系统已安装在2 MeV加速器中,并且设备运行良好。

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