Numerical Methods to Determine Convective Heating Rates on Aerodynamic Surfaces

Bharat Kawale, R. Peetala, N. Sahoo, V. Kulkarni
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引用次数: 2

Abstract

The approach for the present work is to develop a one-dimensional heat conduction model to infer the surface heating rates from the temperature data. The temperature history is obtained from a nickel thin film sensor mounted on a quartz substrate during a supersonic flight test. Polynomial curve fitting with regression analysis and cubic spline methods are used to fit the temperature data. One-dimensional numerical schemes are developed to infer surface heating rates by using Duhamel's superposition integral. Since the temperature data are acquired for 10 s, the one-dimensional behavior of heat penetration might not be applicable for entire time scale. In order to include the lateral conduction of heat along the depth of substrate, finite-element analysis of a more realistic gauge-substrate system is carried out with commercial package ANSYS 11. With the inputs of surface heating rates predicted from Duhamel's superposition integral, the temperature history are then recovered at various depths of the subs...
确定气动表面对流加热速率的数值方法
本工作的方法是建立一个一维热传导模型,从温度数据推断表面加热速率。在超音速飞行试验期间,温度历史是由安装在石英衬底上的镍薄膜传感器获得的。采用回归分析的多项式曲线拟合和三次样条法对温度数据进行拟合。利用Duhamel的叠加积分,建立了一维数值格式来推断地表升温速率。由于温度数据是在10秒内获得的,因此一维的热渗透行为可能不适用于整个时间尺度。为了将热量沿基底深度的横向传导包括在内,利用商业软件包ANSYS 11对一个更现实的测量-基底系统进行了有限元分析。根据Duhamel的叠加积分预测的表面升温速率输入,然后恢复潜艇不同深度的温度历史。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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