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结构参数对环形氙灯光效影响的实验研究

杨泽锋 刘冠宇 李兴文 贾申利 刘建军 李海兵 隋展

杨泽锋, 刘冠宇, 李兴文, 等. 结构参数对环形氙灯光效影响的实验研究[J]. 强激光与粒子束, 2018, 30: 022001. doi: 10.11884/HPLPB201830.170263
引用本文: 杨泽锋, 刘冠宇, 李兴文, 等. 结构参数对环形氙灯光效影响的实验研究[J]. 强激光与粒子束, 2018, 30: 022001. doi: 10.11884/HPLPB201830.170263
Yang Zefeng, Liu Guanyu, Li Xingwen, et al. Experiment study of structure parameters influence on annular flash lamp radiation efficiency[J]. High Power Laser and Particle Beams, 2018, 30: 022001. doi: 10.11884/HPLPB201830.170263
Citation: Yang Zefeng, Liu Guanyu, Li Xingwen, et al. Experiment study of structure parameters influence on annular flash lamp radiation efficiency[J]. High Power Laser and Particle Beams, 2018, 30: 022001. doi: 10.11884/HPLPB201830.170263

结构参数对环形氙灯光效影响的实验研究

doi: 10.11884/HPLPB201830.170263
基金项目: 国防重大专项基金项目
详细信息
    作者简介:

    杨泽锋(1989-), 男,博士研究生,从事脉冲功率与等离子体研究;yangzefeng@foxmail.com

    通讯作者:

    李兴文(1978-), 男,博士,从事脉冲功率与等离子体研究;xwli@mail.xjtu.edu.cn

  • 中图分类号: TN245;TL632

Experiment study of structure parameters influence on annular flash lamp radiation efficiency

  • 摘要: 脉冲氙灯作为放大器的泵浦源,其泵浦效率直接影响放大器效率。环形氙灯被证明是一种有望提高泵浦效率, 并代替目前直管氙灯工作的新型氙灯。针对不同气压、不同结构的环形氙灯,通过实验研究了气压和内径对环形氙灯放电特性、光效特性以及爆炸特性的影响。结果表明,增加环形氙灯气压和内径可提高其光学效率,被泵浦钕玻璃的荧光最大可提高峰值22.3%,积分值15.7%。但是,增加气压和内径会降低环形氙灯的热负载能力。实验发现气压为26 664 Pa,内径为30 mm的环形氙灯拥有最佳光效并能通过寿命测试。
  • 图  1  放电回路原理图,氙灯布置及钕玻璃荧光测量系统

    Figure  1.  Schematic of discharge circuit, flash lamp layout and measuring system of Nd: glass fluorescence

    图  2  不同氙灯结构的电压电流波形

    Figure  2.  Voltage and current curves from different flash lamp structure

    图  3  不同结构的氙灯的光波形和被泵浦的钕玻璃荧光

    Figure  3.  Light waves of flash lamp and fluorescence of neodymium glass

    图  4  爆炸氙灯的电压电流

    Figure  4.  Voltage and current in flash lamp explosion

    表  1  实验氙灯

    Table  1.   Parameters of experimental flash lamps

    index air pressure/Pa internal diameter/mm outer diameter/mm experimental result
    traditional 1 13 332 0 48 intact
    traditional 2 26 664 0 48 intact
    annular 3 13 332 16 48 intact
    annular 4 13 332 22 48 intact
    annular 5 13 332 30 48 intact
    annular 6 13 332 36 48 intact
    annular 7 19 998 16 48 intact
    annular 8 19 998 22 48 intact
    annular 9 19 998 30 48 intact
    annular 10 19 998 36 48 burst
    annular 11 26 664 16 48 intact
    annular 12 26 664 22 48 intact
    annular 13 26 664 30 48 intact
    annular 14 26 664 36 48 burst
    下载: 导出CSV

    表  2  气压26 664 Pa的不同氙灯结构进灯能量

    Table  2.   Energy fed in lamps of different internal diameter with same pressure (26 664 Pa)

    internal diameter/mm energy
    11 kV 12 kV 13 kV
    0 12 842.6 15 054.2 17 569.7
    16 13 212.2 15 995.7 18 910.0
    22 13 952.6 16 513.9 19 300.3
    30 14 238.8 16 820.5 19 992.5
    36 burst
    下载: 导出CSV

    表  3  气压26 664 Pa的不同氙灯辐射总能量

    Table  3.   Total radiation energy of flash lamps with pressure of 26 664 Pa

    internal diameter/mm energy
    11 kV 12 kV 13 kV
    0 1.78 2.06 2.40
    16 1.91 2.20 2.52
    22 1.97 2.28 2.60
    30 1.99 2.30 2.63
    36 burst
    下载: 导出CSV

    表  4  不同气压下,内径30 mm环形氙灯辐射总能量

    Table  4.   Total radiation energy of flash lamps with different pressures

    air pressure/Pa energy
    11 kV 12 kV 13 kV
    13332 1.86 2.15 2.42
    19998 1.90 2.20 2.51
    26664 1.98 2.30 2.63
    下载: 导出CSV

    表  5  不同氙灯结构爆炸特性

    Table  5.   Explosion character of different flash lamps

    internal diameter/mm voltage/kV capacitive energy storage/J 1/3 pulse width/μs ultimate explosion energy/J explosion coefficient life(number of times used)
    22 18.1 75 350 569 114 039 0.66 35
    30 18.0 74 520 568 113 939 0.65 38
    36 16.8 64 915 586 115 730 0.56 142
    下载: 导出CSV
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出版历程
  • 收稿日期:  2017-06-27
  • 修回日期:  2017-10-09
  • 刊出日期:  2018-02-15

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