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高功率Z-pinch装置5 MV主开关及开关区设计
引用本文:李洪涛,王玉娟,夏明鹤,关永超,傅贞,丁胜,任靖,孟维涛,戴英敏,韩文辉,丁伯南,丰树平,谢卫平,邓建军.高功率Z-pinch装置5 MV主开关及开关区设计[J].强激光与粒子束,2006,18(3):459-462.
作者姓名:李洪涛  王玉娟  夏明鹤  关永超  傅贞  丁胜  任靖  孟维涛  戴英敏  韩文辉  丁伯南  丰树平  谢卫平  邓建军
作者单位:中国工程物理研究院 流体物理研究所, 四川 绵阳621900
基金项目:国防科技应用基础研究基金
摘    要: 基于激光等离子体和过电压波击穿原理研制了应用于高功率“Z-pinch”装置的22级5 MV激光触发多级多通道开关,采用钳位环技术解决了狭小空间的匀场问题,过压自击穿间隙场分布不均匀度约为0.080,激光触发间隙场分布不均匀度约为0.056,由绝缘部件沿面电场强度决定的系统安全系数约为0.8。根据J.C.Martin公式和静电场分析计算结果,解决了高功率“Z-pinch”装置主开关及开关区的工程设计问题。

关 键 词:激光触发多级多通道开关  开关区  钳位环  绝缘  电场分布
文章编号:1001-4322(2006)03-0459-04
收稿时间:2005/7/20
修稿时间:2005年7月20日

Design of the switch and switch section of high power Z-pinch facility
LI Hong-tao,WAND Yu-juan,XIA Ming-he,GUAN Yong-chao,FU Zhen,DING Sheng,REN Jing,MENG Wei-tao,DAI Ying-min,HAN Wen-hui,DING Bo-nan,FENG Shu-ping,XIE Wei-ping,DENG Jian-jun.Design of the switch and switch section of high power Z-pinch facility[J].High Power Laser and Particle Beams,2006,18(3):459-462.
Authors:LI Hong-tao  WAND Yu-juan  XIA Ming-he  GUAN Yong-chao  FU Zhen  DING Sheng  REN Jing  MENG Wei-tao  DAI Ying-min  HAN Wen-hui  DING Bo-nan  FENG Shu-ping  XIE Wei-ping  DENG Jian-jun
Institution:Institute of Fluid Physics, CAEP, P.O.Box 919-108, Mianyang 621900, China
Abstract:A 22 stage 5 MV laser-triggered multi-stage switch was designed based on the principle of laser-produced plasma and over-voltage wave.A metal ring was connected to a voltage divider to form a voltage-holding ring which was used to solve the problem of field regularity in small space.The relative difference of the electronic field of the selfbreakdown gaps was less than 0.056 and the relative error of the electronic field of the laser-triggered gap was less than 0.080 in the voltage-holding ring scheme.The switch and switch container were designed based on the results of electrostatic calculation.The satety factor of the switch and its' container was 0.8.The breakdown electronic field was calculated by J.C.Martin formula.
Keywords:Laser-triggered multi-stage switch  Switch container  Insulation  Field distribution
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