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Spectroscopic Measurements of High Emissivity Materials Using Two-Dimensional Two-Color Thermometry

机译:二维双色测温法对高发射率材料的光谱测量

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Radiative heat transfer characteristics from the surface of a substance coated with a high-emissivity material have been examined from the measured two-dimensional (2D) temperature distribution using two-color thermometry principle. The technique utilized a charge coupled device camera and optical filters having either wide or narrow wavelength bandpass filters. The results obtained were compared to evaluate the accuracy of the temperature measurements. The 2D emissivity distributions were also derived from the measured 2D temperature distributions. The results indicate that the substrate coated with high-emissivity material exhibit high emission of radiation, resulting in effective cooling. The enhanced emissivity of materials also results in improved radiative heat transfer in heating furnaces and other high-temperature applications. The emissivity measured with the wide-bandpass filters increased with temperature. Atmospheric absorption, mainly due to humidity, made a negligible contribution to the total spectral intensity and to the temperature measurements. The small discrepancies are attributed to the dependence of emissivity on wavelength. Thus, the use of narrow-bandpass filters in thermometry is advantageous over the wide-bandpass ones.
机译:使用双色测温原理,根据测得的二维(2D)温度分布,检查了涂覆有高发射率材料的物质表面的辐射传热特性。该技术利用电荷耦合器件照相机和具有宽或窄波长带通滤波器的光学滤波器。比较所获得的结果以评估温度测量的准确性。 2D发射率分布也从测得的2D温度分布中得出。结果表明,涂​​覆有高发射率材料的基板显示出高辐射发射,从而导致有效冷却。材料发射率的提高还导致加热炉和其他高温应用中辐射热传递的改善。宽带滤波器测量的发射率随温度升高。主要由于湿度引起的大气吸收对总光谱强度和温度测量的贡献可忽略不计。小差异归因于发射率对波长的依赖性。因此,在测温中使用窄带通滤波器优于宽带通滤波器。

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