J4 ›› 2009, Vol. 26 ›› Issue (3): 366-370.

• 激光应用 • 上一篇    下一篇

金属球壳在激光辐照下热效应的数值计算

李南1 罗华平2 杨高潮1 宋正方1   

  1. 1中科院安徽光机所大气光学中心, 安徽 合肥 230031; 
    2塔里木大学文理学院, 新疆 塔里木 843300
  • 收稿日期:2008-06-23 修回日期:2008-07-22 出版日期:2009-05-28 发布日期:2009-05-07
  • 通讯作者: 李南 (1980-),女,硕士,助理工程师,主要从事激光参数测量的研究。 E-mail:linanabcde@yahoo.com.cn

Numerical calculation for the thermal effect of metal spherical shell irradiated by laser

LI Nan, LUO Hua-Ping, YANG Gao-Chao, SONG Zheng-Fang   

  1. 1.Center for Atmospheric Optics of Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei 230031, China; 
    2. College of Arts and Science,Tarim University, Tarim 843300, China
  • Received:2008-06-23 Revised:2008-07-22 Published:2009-05-28 Online:2009-05-07

摘要:

利用有限元法对金属球壳在恒定功率密度激光辐照下的热效应进行了数值计算,分析了在激光辐照过程中,金属球壳内外壁的温升、温差的变化规律,并主要以铜、铝材料为例,比较了铜、铝球壳在激光辐照下的温度变化和外壁温度响应情况。数值计算结果表明,激光辐照期间,在经过热响应的过渡过程后,金属球壳内、外壁的升温率几乎为常量,内外壁温差基本保持恒定值;对于壁厚在0.004m~0.02m范围内的铜、铝球壳,激光辐照停止后,内外壁热平衡过程在几十毫秒到1秒的时间内结束。

关键词: 激光技术, 激光辐照, 金属球壳, 温升, 内外壁温差

Abstract:

The thermal effect of metal spherical shell irradiated by invariable power density laser was calculated using finite element method, the variety rule for temperature rise and temperature difference of inwall and outerwall was analyzed, also the metals of copper and aluminum were taken for examples, the temperature variety and response time of the copper spherical shell irradiated by laser were compared with the aluminum spherical shell. The numerical calculation results indicate that, when the transitional process has finished, the temperature rising speed of inwall and outerwall is almost a constant, and the temperature difference of inwall and outerwall keeps invariably during laser irradiation. When the laser irradiation stops, the heat balance process between inwall and outerwall will be done within tens of milliseconds to one second for the copper spherical shell and aluminum spherical shell with thickness from 0.004m to 0.02m.

Key words: laser techniques, laser irradiation, metal spherical shell, temperature rise, temperature difference of inwall and outerwall

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