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基于数值模拟的激光热负荷光强分布设计
引用本文:宋宏伟,李少霞,虞钢.基于数值模拟的激光热负荷光强分布设计[J].中国激光,2006,33(6):42-845.
作者姓名:宋宏伟  李少霞  虞钢
作者单位:中国科学院力学研究所,北京,100080
基金项目:国家高技术研究发展计划(863计划)
摘    要:激光活塞热负荷模拟实验需将高斯光束调制成按特定光强分布的多个同心光环,为此提出了基于有限元(FE)分析的激光热负荷光强分布反求设计思想。应用最初设计的整形器对有限元模型进行校核,在合理的范围内调整边界条件参数和活塞材料热物性参数,使模拟结果与实验结果吻合;对于校核后的有限元模型,通过调整光强分布和加载条件以接近目标温度场,从而获得整形器优化设计方案。基于上述方法可实现由目标温度场反求设计出光场分布。研究表明,采用数值模拟方法进行研究,可大幅度缩短整形器设计周期、降低设计费用,并起到虚拟实验的作用,从而提高了热负荷实验的可控性和可预见性。

关 键 词:激光技术  热负荷  有限元  激光光束整形
文章编号:0258-7025(2006)06-0842-04
收稿时间:2005-07-19
修稿时间:2005-11-08

Intensity Distribution Design for Laser-Induced Thermal Loading Based on Numerical Simulation
SONG Hong-wei,LI Shao-xia,YU Gang.Intensity Distribution Design for Laser-Induced Thermal Loading Based on Numerical Simulation[J].Chinese Journal of Lasers,2006,33(6):42-845.
Authors:SONG Hong-wei  LI Shao-xia  YU Gang
Affiliation:Institute of Mechanics, The Chinese Academy of Sciences, Beijing 100080, China
Abstract:To accomplish laser-induced thermal loading simulation tests for pistons,the Gaussian beam was modulated into multi-circular beam with specific intensity distribution.A reverse method was proposed to design the intensity distribution for the laser-induced thermal loading based on finite element(FE) analysis.Firstly,the FE model is improved by alternating parameters of boundary conditions and thermal-physical properties of piston material in a reasonable range,therefore it can simulate the experimental results of the originally designed shaping lens.Secondly,with the validated FE model, the target temperature field is achieved by alternating the intensity field and loading conditions,and the optimal design for the beam shaping lens is subsequently obtained.This reverse design method bridges temperature field and intensity field.The results show that numerical simulation can reduce design cycle and design expense efficiently.Meanwhile,this process can be taken as a kind of virtual experiment which makes the thermal loading test more controllable and predictable.
Keywords:laser technique  thermal loading  finite element  laser beam shaping
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