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首页> 外文期刊>Applied optics >MEASUREMENT OF SURFACE TEMPERATURE AND EMISSIVITY BY A MULTITEMPERATURE METHOD FOR FOURIER-TRANSFORM INFRARED SPECTROMETERS
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MEASUREMENT OF SURFACE TEMPERATURE AND EMISSIVITY BY A MULTITEMPERATURE METHOD FOR FOURIER-TRANSFORM INFRARED SPECTROMETERS

机译:傅里叶变换红外光谱仪的多温度法测量表面温度和发射率

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摘要

Surface temperatures are estimated with high precision based on a multitemperature method for Fourier-transform spectrometers. The method is based on Planck's radiation law and a nonlinear least-squares fitting algorithm applied to two or more spectra at different sample temperatures and a single measurement at a known sample temperature, for example, at ambient temperature. The temperature of the sample surface can be measured rather easily at ambient temperature. The spectrum at ambient temperature is used to eliminate background effects from spectra as measured at other surface temperatures. The temperatures of the sample are found in a single calculation from the measured spectra independently of the response function of the instrument and the emissivity of the sample. The spectral emissivity of a sample can be measured if the instrument is calibrated against a blackbody source. Temperatures of blackbody sources are estimated with an uncertainty of 0.2-2 K. The method is demonstrated for measuring the spectral emissivity of a brass specimen and an oxidized nickel specimen. (C) 1996 Optical Society of America [References: 14]
机译:基于傅里叶变换光谱仪的多温度方法,可以高精度估算表面温度。该方法基于普朗克辐射定律和非线性最小二乘拟合算法,该算法应用于不同样品温度下的两个或多个光谱,以及已知样品温度(例如环境温度)下的单个测量。在环境温度下可以很容易地测量样品表面的温度。环境温度下的光谱用于消除其他表面温度下的光谱背景影响。样品的温度可以从测量的光谱中一次计算出来,而与仪器的响应函数和样品的发射率无关。如果仪器针对黑体源进行校准,则可以测量样品的光谱发射率。估计黑体源的温度不确定度为0.2-2K。该方法被证明用于测量黄铜样品和氧化镍样品的光谱发射率。 (C)1996年美国眼镜学会[参考文献:14]

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