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隔热结构对塞块式量热计热流测量的影响

杨庆涛 白菡尘 张涛 王辉

实验流体力学Issue(5):92-98,7.
实验流体力学Issue(5):92-98,7.DOI:10.11729/syltlx20130085

隔热结构对塞块式量热计热流测量的影响

Effects of adiabatic structure on heat flux measurement using a slug calorimeter

杨庆涛 1白菡尘 1张涛 2王辉2

作者信息

  • 1. 中国空气动力研究与发展中心 超高速所高超声速冲压发动机技术重点实验室,四川 绵阳 621000
  • 2. 中国空气动力研究与发展中心 超高速所,四川 绵阳 621000
  • 折叠

摘要

Abstract

Slug calorimeter is widely used in thermal protection tests,and lateral heat conduc-tion is one of the most important sources of heat flux measurement error using a slug calorime-ter.An improved adiabatic structure is designed based on slug calorimeter heat transfer analysis, and a heat loss correction method is proposed based on semi-infinite body assumption.FEA(Fi-nite Element Analysis)model is developed to study effects of thermal contact resistance (TCR) between the slug and the adiabatic structure on data reduction results.If TCR is large (R= 1 × 10-3 m2 ·K/W),the max measurement error is less than-9% without correction and more than 20% with correction.On the other hand,when TCR is small (R= 1 ×10-4 m2 ·K/W),the error is about-20% without correction and less than 1 .5% with correction.It is concluded that the correction method can only used in the situation when TCR can be neglected.Numerical simula-tion results also show that using the improved structure with a metal sharp wedge structure add-ed near the surface of adiabatic layer,the max temperature of adiabatic material decreases from o-ver 2000℃ to less than 300℃,which means that with the improved structure,the adiabatic ma-terial is protected efficientlly from ablation.The heat transfer area between the metal wedge and the slug is only about 2 .9% of the total lateral area,which hardly effects selection of data reduc-tion methods.

关键词

塞块式量热计/侧向传热/热损失修正/隔热结构/热流测量

Key words

slug calorimeter/lateral heat transfer/heat loss correction/adiabatic structure/heat flux measurement

分类

航空航天

引用本文复制引用

杨庆涛,白菡尘,张涛,王辉..隔热结构对塞块式量热计热流测量的影响[J].实验流体力学,2014,(5):92-98,7.

基金项目

高超声速冲压发动机技术重点实验室开放课题 ()

实验流体力学

OA北大核心CSCDCSTPCD

1672-9897

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