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PET回旋加速器内部束流测量探头热分析 被引量:1

Thermal analysis of interior beam probes for PET cyclotron
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摘要 基于时域有限差分法(FDTD)对PET回旋加速器内部束流测量探头的热传导过程进行了数值模拟。定义了运动和固定两种探头测量模式,在辐射散热的条件下,分别研究了3种探头材料(铜、钽、钨)在两种模式下的表面最高温度和尾部温度随功率加载时间的变化。研究表明:运动模式下,3种探头材料没有明显的优劣,探头速度选为10 mm/s较为合适;固定模式下,由于铜材料具有高黑度、高热导率的优点,是设计探头的最佳材料。 The thermal transport process of measuring probes within PET cyclotron is simulated based on finite difference time domain(FDTD) method.For both dynamic and static measurement modes,the highest surface temperature and back-end temperature for three probes of different materials(Cu,Ta,W) are obtained with the variation of power load time under thermal irradiation condition.The results show that there is no obvious difference among the three materials and the speed of probes should be 10 mm/s in dynamic mode.However,in static mode,copper turns out to be the best material for probe design due to its advantages such as high blackness and high thermal conductivity.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2011年第5期1346-1350,共5页 High Power Laser and Particle Beams
基金 中国工程物理研究院军转民开发项目
关键词 PET回旋加速器 测量探头 热分析 时域有限差分法 PET cyclotron measuring probe thermal analysis finite difference time domain method
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参考文献6

  • 1唐靖字,魏宝文.回旋加速器理论与设计[M].合肥:中国科学技术大学出版社,2008:186-194.
  • 2Clark DJ. Beam diagnostics and instrumentation[J]. IEEETrans on Nuclear Science,1966,13:15 -23.
  • 3Olivo M. Beam diagnostics equipment for cyclotrons[C]//Proceedings of the Seventh International Conference on Cyclotrons and their Applications. 1975: 331-340.
  • 4Hellborg R, Mckay J, Romanov V A, et al. Electrostal.ie aece}erator.s: fundamentals and applieations[M ]. Berlin: Springer, 2006:317- 327.
  • 5赵越,谢卫平,李洪涛,刘金锋,刘宏伟,赵士操,袁建强.影响高功率光导开关临界频率热因素的数值分析[J].强激光与粒子束,2010,22(11):2778-2782. 被引量:5
  • 6叶君永,黄卡玛.随机相位和随机频率微波加热效应的数值模拟[J].强激光与粒子束,2004,16(12):1576-1580. 被引量:7

二级参考文献13

  • 1牛燕雄,谭吉春.GaAs光导开关的热击穿实验研究[J].光电子.激光,1994,5(5):305-307. 被引量:5
  • 2Loubriel G M,O'Malley M W,Zutavern F J.Toward pulsed power uses for photoconductive semiconductor switches:Closing switches[C]//Proc of 6th IEEE IPPC.1987:145-148.
  • 3Yuan Jianqiang,Xie Weiping,Liu Hongwei,et al.Peculiar photoconductivity in nonlinear GaAs PCSS[C]//17th IEEE International Pulsed Power Conference.2009.
  • 4Mar A,Loubriel G M,Zutavern F J,et al.Fireset applications of improved longevity optically activated GaAs photoconductive semiconductor switches[C]//IEEE International Conference on Pulsed Power Plasma Science.2001:166-169.
  • 5Mar A,Bacon L,Loubriel G M.Subsystems packaging study:feasibility of PCSS-based pulser for highly portable platforms[R].Sandia Report-2002-2059,2002.
  • 6Osepchuck J M.A history of microwave heating applications[J].IEEE Trans Microwave Theory and Techniques,1984,32:1200-1224.
  • 7Breccia A,Fini A,Feroci G,et al.Coupled systems dielectric microwave to improve thermal effects[J].Microwave Power ,1995,30(1) :3-9.
  • 8Torres F,Jecko B.Complete FDTD analysis of microwave heating processes in frequency-dependent and temperature-dependent Media[J].IEEE Trans on Microwave Theory and Techniques,1997,45(1):108-116.
  • 9Booton R C Jr.Computational methods for electromagnetic and microwaves[M].NewYork:John Wiley-Insterscience Publication,1992.
  • 10袁建强,谢卫平,周良骥,陈林,王新新.光导开关研究进展及其在脉冲功率技术中的应用[J].强激光与粒子束,2008,20(1):171-176. 被引量:49

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