Laser-based Calibration and Processing Technique for a Robust Fast-Response Surface Heat Transfer Gauge

RT Penty Geraets, M. McGilvray, P. Shah, Bao Williams
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引用次数: 4

Abstract

Two methods for calculating surface heat transfer rates from sub-surface temperature measurements are detailed for a robust fast-response gauge, designed for use in high enthalpy hypersonic ground test facilities. One method treats the gauge as a calorimeter, and the second is a pseudo non-linear version of the Sequential Function Specification Method algorithm, which calculates surface heat transfer by deconvolving the unit impulse response of the gauge out of a measured temperature. An experiment to find the impulse response of the gauge using a short duration pulsed laser to apply a heat flux to the surface of the gauge is performed. The response at three initial temperatures is recorded to characterise variation in thermal properties as a function of temperature. The use of the experimentally determined unit impulse response in the calculation of surface heat transfer can significantly reduce measurement uncertainty by removing the need to assume physical geometry and material properties of the gauge.
基于激光的鲁棒快速响应表面传热计校准与加工技术
详细介绍了用于高焓高超声速地面试验设施的稳健快速响应测量仪的两种计算地下温度测量的表面传热率的方法。一种方法将量规视为量热计,另一种方法是序列函数规范方法算法的伪非线性版本,该算法通过将量规的单位脉冲响应与测量温度进行反卷积来计算表面传热。利用短持续时间脉冲激光对量规表面施加热流,进行了测量量规脉冲响应的实验。记录三个初始温度下的响应,以表征热性能随温度的变化。在计算表面传热时,使用实验确定的单位脉冲响应,可以通过消除对量规的物理几何和材料特性的假设,显著降低测量的不确定性。
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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