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Mechanical design of a low β superconducting elliptical cavity for CSNS-II
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作者 Peihua Qu Huachang Liu +6 位作者 Yun Wang Bo Li Xiaolei Wu Ahong Li Mengxu Fan Qiang Chen Jun Peng 《Radiation Detection Technology and Methods》 CSCD 2021年第3期315-323,共9页
Background A lowβsuperconducting elliptical cavity was designed for the China Spallation Neutron Source phase II project(CSNS-II).Methods The method to improve the mechanical stability of the lowβsuperconducting ell... Background A lowβsuperconducting elliptical cavity was designed for the China Spallation Neutron Source phase II project(CSNS-II).Methods The method to improve the mechanical stability of the lowβsuperconducting elliptical cavity was introduced,and the corresponding mechanical design was given.The software COMSOL Multiphysics and ANSYS APDL were used to calculate the static Lorentz force detuning factor k_(L)(LFD)and the helium pressure sensitivity factor k_(p)(DFDP)of the bare cavity,which were−4.71 Hz(MV/m)^(−2) and−21.1 Hz/mbar,respectively.The double-ring stiffeners reinforcement scheme was adopted.Results The radii of the double-ring stiffeners were 70 and 135 mm,respectively.The structure design of the helium vessel of the cavity was given.The following is the mechanical parameters of the reinforced cavity,the tuning sensitivity is 199.8 kHz/mm,longitudinal stiffness is 4.76kN/mm,k_(L) and k_(p) were−1.39 Hz(MV/m)^(−2) and 4.67 Hz/mbar,respectively,which met the operating requirements.The tuning sensitivity and stiffness of the reinforced cavity with different wall thicknesses were optimized,and the final wall thickness was selected as 4 mm.Conclusion The mechanical design of CSNS-II 648 MHz five-cell lowβsuperconducting elliptical cavity was introduced systematically in the paper.The LFD,DFDP,and the maximum surface stress of the cavity were reduced by optimizing the cavity wall thickness and the position of the double-ring stiffeners.The reinforced cavity met operational requirements. 展开更多
关键词 lowβsuperconducting elliptical cavity Mechanical design LFD DFDP Tuning sensitivity Longitudinal stiffness
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CSNS-Ⅱ低β超导椭球腔的电磁设计
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作者 瞿培华 刘华昌 +7 位作者 李波 王云 李阿红 陈强 吴小磊 樊梦旭 彭军 罗喜保 《核技术》 CAS CSCD 北大核心 2020年第8期58-65,共8页
为中国散裂中子源二期工程(Chinese Spallation Neutron Source-Ⅱ,CSNS-Ⅱ)设计了一种低β超导椭球腔,利用2D程序SUPERFISH对该腔体的单元尺寸和高频等设计参数进行优化,获得的工作频率为648 MHz,几何β(βg)为0.47,单元个数为5,峰值... 为中国散裂中子源二期工程(Chinese Spallation Neutron Source-Ⅱ,CSNS-Ⅱ)设计了一种低β超导椭球腔,利用2D程序SUPERFISH对该腔体的单元尺寸和高频等设计参数进行优化,获得的工作频率为648 MHz,几何β(βg)为0.47,单元个数为5,峰值电场比Epk/Eacc、峰值磁场比Bpk/Eacc和轴向电场平整度分别为3.35、6.1 mT·(MV/m)^-1和98.42%。通过2D软件MultiPac和3D软件CST粒子工作室(Computer Simulation Technology Particle Studio,CST PS)分析了优化后腔型的二次电子倍增情况,2D结果显示在峰值场0~80 MV·m^-1区间,二次电子发射系数小于1,表明整个腔体不会发生Multipacting(MP)效应。与2D结果不同,3D结果表明在椭球赤道位置存在MP效应,但在赤道处引入一个小凸起,并进行适当的后处理和高功率老练,则可以显著抑制MP效应。与国际上同类型椭球腔进行对比,主要高频性能参数基本相当。 展开更多
关键词 β超导椭球腔 SUPERFISH 腔型设计 MultiPac CST PS 二次电子倍增
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