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An experimental method for making spectral emittance and surface temperature measurements of opaque surfaces

机译:用于测量不透明表面的光谱发射率和表面温度的实验方法

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摘要

An experimental procedure has been developed to make spectral emittance and temperature measurements. The spectral emittance of an object is calculated using measurements of the spectral emissive power and of the surface temperature of the object obtained using a Fourier transform infrared (FTIR) spectrometer. A calibration procedure is described in detail which accounts for the temperature dependence of the detector. The methods used to extract the spectral emissive power and surface temperature from measured infrared spectra were validated using a blackbody radiator at known temperatures. The average error in the measured spectral emittance was 2.1% and the average difference between the temperature inferred from the recorded spectra and the temperature indicated on the blackbody radiator was 1.2%. The method was used to measure the spectral emittance of oxidized copper at various temperatures.
机译:已经开发了实验程序以进行光谱发射率和温度测量。使用傅立叶变换红外(FTIR)光谱仪获得的物体的光谱发射功率和表面温度的测量值来计算物体的光谱发射率。详细描述了校准程序,该程序考虑了检测器的温度依赖性。使用黑体辐射器在已知温度下验证了从测得的红外光谱中提取光谱发射功率和表面温度的方法。测量的光谱发射率的平均误差为2.1%,从记录的光谱推断出的温度与黑体辐射器上指示的温度之间的平均差为1.2%。该方法用于测量各种温度下氧化铜的光谱发射率。

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