化工学报 ›› 2011, Vol. 62 ›› Issue (S1): 123-129.

• 流体力学与传递现象 • 上一篇    下一篇

窗口材料热力耦合模拟

刘元春,何玉荣,彭稳根,朱嘉琦,韩杰才   

  1. 哈尔滨工业大学能源科学与工程学院,黑龙江 哈尔滨 150001
  • 出版日期:2011-07-03 发布日期:2011-07-03

  • Online:2011-07-03 Published:2011-07-03

摘要:

当飞行器以超声速在大气中飞行时,飞行器表面将受到强烈的气动力和气动热的影响,从而使飞行器表面温度升高,外部边界层厚度增加,这对窗口材料提出了严格的要求。为了给窗口材料的气动力和气动热的研究提供理论依据,本文采用有限元分析方法,分别计算了三种窗口材料在超声速飞行时的温度场和应力场分布。通过计算和对比,结果表明,在恒定热通量为1×106 W·m-2时,多光谱ZnS和蓝宝石窗口材料的最大应力小于材料的许用应力,满足设计要求。

关键词: 气动力, 气动热, 窗口材料, 有限元, 热应力

Abstract:

Hypersonic aerocraft suffers strong aerodynamic forces and serious aerodynamic heating, requiring a more stringent design for infrared window.In order to provide a theoretical guidance for evaluation of the influence of aerodynamic heating and forces on infrared window materials,a finite element analysis of the distributions of thermal and stress fields in the infrared window is presented for hypersonic aerocrafts in this paper.The thermal and stress responses are then investigated under a constant heat flux boundary condition for three different window materials,and distributions of thermal field and stress field are also obtained in this work.Numerical results show that the maximum stress of CVDZnS and sapphire is less than the material mean strength at Mach 6.0,so this two materials are safe in this case.

Key words: 气动力, 气动热, 窗口材料, 有限元, 热应力