A Study on Heat Flux Characteristics of Tubular Quartz Lamp for Thermal Load Design of High Temperature Structural Test

Junhyeok Kim
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Abstract

Development of supersonic flying vehicle is one of the most latest issue in modern military technology. Specifically, structural integrity of supersonic flying vehicle can be verified by high temperature structural test. High temperature structural test is required to consider thermal load caused by aerodynamic heating while applying structural load simultaneously. Tubular quartz lamps are generally used to generate thermal load by emitting infrared radiation. In this study, modified heat flux model of tubular quartz lamp is proposed based on existing model. Parameters of the proposed model are optimized upon measured heat flux in three dimensions. Finally, thermal load of plate specimen is designed by the heat flux model. In conclusion, it is possible to predict heat flux applied on plate specimen and desired thermal load of high temperature structural test can be obtained.
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用于高温结构试验热负荷设计的管状石英灯热流特性研究
超声速飞行器的研制是现代军事技术的最新课题之一。具体来说,超声速飞行器的结构完整性可以通过高温结构试验来验证。高温结构试验需要在同时施加结构载荷的同时考虑气动加热引起的热载荷。管状石英灯一般是通过发射红外辐射来产生热负荷。本文在现有管状石英灯热流密度模型的基础上,提出了改进的管状石英灯热流密度模型。根据实测的三维热流密度对模型参数进行了优化。最后,采用热流密度模型对板试件进行热负荷设计。综上所述,可以预测施加在板试件上的热流密度和高温结构试验所需的热负荷。
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