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CSNS/RCS中主要阻抗元件的仿真计算研究 被引量:3

Impedance Computation of Main Components in CSNS/RCS
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摘要 中国散裂中子源(CSNS)快循环同步加速器(RCS)是强流质子加速器,对环中真空元件的阻抗研究是判断束流能否稳定运行的重要依据。通过正确估算环中元件阻抗,可及时对元件的阻抗进行有效控制和防止束流不稳定性发生,从而减小束流损失。本文利用CST电磁场仿真软件给出了RCS环中高频腔及准直器的耦合阻抗,并探讨了bus-bar结构对高频腔本身及束流稳定的影响,发现需重新设计bus-bar结构使腔固有频率大于10MHz才能彻底解决因共振可能引起的丢束。此外,计算表明,主准直器屏蔽有利于减小耦合阻抗及损失功率,在安装代价较小的情况下需对主准直器进行屏蔽。 The Rapid Cycling Synchrotron (RCS) of the China Spallation Neutron Source (CSNS) is a high intensity proton accelerator. The study on the coupling impedance in the ring plays an important role in the stability of the beams. The total impedances of the ring and the occurrence of the beam instability can be controlled by evaluating of the coupling impedance accurately. The impedances of some main components in the RCS ring, such as RF cavities and collimator were calculated by using numerical simulation. The impact of bus-bar's configura- tion on RF cavities and beams was estimated by impedance calculation. To solve resonance thoroughly, the inherent frequency should be more than 10 MHz by designing bus-bar's struc- ture again. Furthermore, the RF shield of primary collimator was introduced, which shows a significant reduction of both the longitudinal coupling impedances and the loss power with small installation cost.
出处 《原子能科学技术》 EI CAS CSCD 北大核心 2012年第B09期526-529,共4页 Atomic Energy Science and Technology
关键词 中国散裂中子源 耦合阻抗 高频腔 主准直器 屏蔽 China Spallation Neutron Source coupling impedance RF cavity primary collimator RF shield
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参考文献6

  • 1WEI ]. China Spallation Neutron Source Acceler- ators: Design, research, and development[R]. Edinbeurgh: EPAC, 2006.
  • 2张敏.CST微波工作室用户全书[M].成都:电子科技大学出版社,2004.
  • 3MAFIA user' s guide, Version 4. 025 [M]. Darmstadt, Germany: CST GmbH, 2000.
  • 4ZHANG S Y. SNS storage ring impedances[M]. New York: Alternating Gradient Synchrotron Department Brookhaven National Laboratory, 1999: 15-16.
  • 5WANG N, WANG S, HUANG N, et al. The design of beam collimation system for CSNS/RCS [C] // Proceedings of HB-2010. [S. l].: [s. n. ] ,2010.
  • 6周利娟.BEPCII储存环高频屏蔽波纹管发热实验[J].真空,2005,42(2):49-52. 被引量:3

二级参考文献2

  • 1Yusuke Suetsugu.[C].The 11th symposium on Accelerator Science and Technology, Harima Science Garden C:ty,1997:362-364.
  • 2蒋迪奎.SSRF高频屏蔽波纹管研制[R]:SSRF进展报告[R].,2001.164-168.

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