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类乘波体防热壁板气动加热-温度场耦合特性分析
引用本文:程兴华,杨涛,丰志伟.类乘波体防热壁板气动加热-温度场耦合特性分析[J].航空动力学报,2013,28(7):1591-1597.
作者姓名:程兴华  杨涛  丰志伟
作者单位:国防科学技术大学航天与材料工程学院,长沙,410073
摘    要:针对类乘波体防热壁板,采用松耦合算法推进气动热和传热迭代计算,研究气动加热-温度场的耦合特性.结果表明:在壁板达到辐射平衡前,冷壁热流和辐射平衡热流与真实气动加热的误差分别达+55.1%和-15.4%以上,必须将气动加热和温度场进行耦合分析;当地绝热壁面温度不随时间变化,表面传热系数是耦合效应的关键参数;采用平均表面传热系数进行瞬态气动加热-温度场耦合计算只进行2次气动加热计算,壁面温度预测误差在2.5%以内,可有效提高气动加热-温度场耦合计算的效率.

关 键 词:耦合  气动加热  温度场  防热壁板  类乘波体
收稿时间:2012/7/10 0:00:00

Analysis of aeroheating-temperature field coupling characteristics for thermal protection panel of quasi-wavrider
CHENG Xing-hu,YANG Tao and FENG Zhi-wei.Analysis of aeroheating-temperature field coupling characteristics for thermal protection panel of quasi-wavrider[J].Journal of Aerospace Power,2013,28(7):1591-1597.
Authors:CHENG Xing-hu  YANG Tao and FENG Zhi-wei
Institution:College of Aerospace and Material Engineering, National University of Defense Technology, Changsha 410073, China;College of Aerospace and Material Engineering, National University of Defense Technology, Changsha 410073, China;College of Aerospace and Material Engineering, National University of Defense Technology, Changsha 410073, China
Abstract:For thermal protection panel of quasi-waverider, the loose coupling algorithm was applied to drive the iteration of the aeroheating and heat transfer analysis. Then, the coupling characteristics of aeroheating-temperature field were studied. The results show that, before radiative equilibrium, the errors of cold wall and radiative equilibrium aeroheating are +55.1% and -15.4% over actual aeroheating respectively, so coupling analysis for aeroheating-temperature field was required. As the local adiabatic wall temperature is not changed with time, the surface heat-transfer coefficient is a key parameter for coupling effect. Only two aeroheating calculations are needed during calculation of coupling aeroheating-temperature field with average heat convection coefficient, and the error of predicted wall temperature is less than 2.5%, thus highly improving the analysis efficiency of coupled aeroheating-temperature field.
Keywords:coupling  aeroheating  temperature field  thermal protection panel  quasi-wavrider
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