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Volume 35 Issue 5
May  2013
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Structural design of the water cooling system in a high power end cooled Yb:YAG slab laser

  • Received Date: 2010-11-03
    Accepted Date: 2011-01-06
  • In order to achieve a high cooling efficiency of a high power Yb:YAG laser, its water cooling structural was designed, and the heat transfer effect of this structure was simulated by means of finite element method. Surface coefficient of heat transfer and the temperature distribution on the heat exchange surface were obtained. The results indicate that the distribution of the transfer coefficient and the temperature is uniform distribution in this structure. The coefficient of heat transfer reached 1.8104W/(m2K) and the temperature difference on the surface was less than 1K, which indicate a good heat transfer effect.
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    ARMSTRONG J P,BAYRAMIAN A J,CAMPBELL R W,et al.High energy hybrid fiber-Yb:SFAP laser with dynamic spectral and temporal pulse shaping[C] //The Conference on Laser and Electro-Optics/The Quantum Electronics and Laser Science.San Jose,USA:OSA,2008:CThFF5 1-2.
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    YAO Zh Y,JIANG J F,TU B,et al.1.5kW laser diod-epumped Nd:YAG disk laser[J].Chinese Journal of Lasers,2007,34(1):35-38(in Chinese).
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    YU H W,XU M J,DUAN W T,et al.Research progress of laser drivers for intertial fusion energy[J].Laser Optoelectronics Progress,2006(9):55-62(in Chinese).
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    BOURDET G L,YU H W.Longitudinal temperature distribution in an end-pumped solid-state amplifier medium:application to a high average power diode pumped Yb:YAG thin disk amplifier[J].Applied Optics,2007,46(23):6033-6041.
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    BAHBAH S,ALBACH D,CHANTELOUP J C,et al.Gain thermal distorsion investigation on the Yb:YAG diode pumped Lucia oscillator[C] //The Conference on Lasers and Electro-Optics/The Quantum Electronics and Laser Science.San Jose,USA:OSA,2008:CFQ3 1-2.
    [7]

    DUAN W T,JIANG X Y,JIANG D B,et al.10Hz joule- class laser diode end-pumped V-shape water-cooled Yb:YAG oscillator[J].Chinese Journal of Lasers,2010,37(1):44-48(in Chinese).
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通讯作者: 陈斌, bchen63@163.com
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Structural design of the water cooling system in a high power end cooled Yb:YAG slab laser

  • 1. Research Centre of Laser Fusion, China Academy of Engineering Physics, Mianyang 621900, China

Abstract: In order to achieve a high cooling efficiency of a high power Yb:YAG laser, its water cooling structural was designed, and the heat transfer effect of this structure was simulated by means of finite element method. Surface coefficient of heat transfer and the temperature distribution on the heat exchange surface were obtained. The results indicate that the distribution of the transfer coefficient and the temperature is uniform distribution in this structure. The coefficient of heat transfer reached 1.8104W/(m2K) and the temperature difference on the surface was less than 1K, which indicate a good heat transfer effect.

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