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薄层物料受激光脉冲热作用的数值模拟
引用本文:蒋方明,刘登瀛,周建华.薄层物料受激光脉冲热作用的数值模拟[J].计算物理,2002,19(5):443-448.
作者姓名:蒋方明  刘登瀛  周建华
作者单位:中国科学院工程热物理研究所, 北京 100080
基金项目:国家自然科学基金重点项目(59736130),中国科学院"九五"基础性研究重大项目(KJ951-B1-704)以及国家重点基础研究发展规划项目(G2000026305)资助项目
摘    要:有别于传统的将加热光源作为第二类边界条件的传热计算方法,考虑到激光与薄层多孔材料热相互作用,将激光加热处理为在被加热物料内沿光程按指数规律衰减的内加热源.考虑到薄层多孔材料在大功率微秒脉冲激光作用下可能会出现极为明显的非傅立叶效应,采用非傅立叶导热的双曲型模型描述多孔材料内的传热过程,并用有限差分方法对其进行数值求解,重点分析并讨论了薄层多孔材料的非傅立叶导热现象与物料的光学性质之间的相关关系.

关 键 词:非傅立叶导热  多孔材料  激光热处理  数值模拟  
文章编号:1001-246X(2002)05-0443-06
收稿时间:2001-03-26
修稿时间:2001年3月26日

NUMERICAL SIMULATION OF NON-FOURIER HEAT CONDUCTION IN THIN LAYER POROUS MATERIAL HEATED BY MICROSECOND LASER PULSE OF HIGH POWER DENSITY
JIANG Fang-ming,LIU Deng-ying,ZHOU Jian-hua.NUMERICAL SIMULATION OF NON-FOURIER HEAT CONDUCTION IN THIN LAYER POROUS MATERIAL HEATED BY MICROSECOND LASER PULSE OF HIGH POWER DENSITY[J].Chinese Journal of Computational Physics,2002,19(5):443-448.
Authors:JIANG Fang-ming  LIU Deng-ying  ZHOU Jian-hua
Institution:Institute of Engineering Thermophysics, Chinese Academy of Sceinces, Beijing 100080, China
Abstract:In the traditional heat transfer computation,laser heating is always treated as one kind of special boundary conditions,that is, the second boundary condition,which is not fit for the real condition of laser absorption,especially for the thin layer porous material.Differently from the traditional methods,the laser heating is regarded as an inner thermal source and it is assumed that the intensity of the laser attenuates exponentially with its penetration depth.Since evident non Fourier heat conduction effects may appear in thin layer porous materials heated by the high intensity laser pulse,the hyperbolic non Fourier heat conduction model is used to describe this heat transfer case and the corresponding numerical solution is obtained with the finite difference method.According to the obtained solution,some correlations of the non Fourier effect and the optical property of the heated materials are obtained too.
Keywords:non-Fourier heat conduction  porous material  laser heat treatment  numerical simulation  
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