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Measurements of surface temperature and emissivity by two-dimensional four-color thermometry with narrow bandwidth

机译:窄带宽二维四色测温法测量表面温度和发射率

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摘要

To study characteristics of heated material surface over 600 K, non-contact measurements of two-dimensional (2D) distributions of temperature and emissivity are very useful for process monitoring in engineerings, because of remote sensing in a short time. The 2D temperature distributions enable us to monitor the surface temperature quantitatively with high spatial resolution. The 2D emissivity distributions give us a capability to judge thermal degradations or defects of the surface. The 2D distributions of temperature and emissivity determined by two-color method using a CCD camera and two optical filters have been already reported by many authors. In this study, a four-color method is proposed to improve accuracy and precision of the temperature and emissivity. Four optical filters with narrow bandpass of 10 nm were used for our measurements, because the thermometry using narrow band is advantageous over that using wide one in terms of accuracy of temperature determination. Distributions of temperature and emissivity were also determined by two-color method for comparison. The results obtained by the four-color method have higher accuracy and precision than two-color method and we can recognize that several conditions of the material surface are clearly illustrated by the resultant 2D emissivity distribution.
机译:为了研究超过600 K的加热材料表面的特性,温度和发射率的二维(2D)分布的非接触式测量对工程中的过程监控非常有用,因为它可以在短时间内进行遥感。二维温度分布使我们能够以高空间分辨率定量监测表面温度。二维发射率分布使我们能够判断表面的热降解或缺陷。许多作者已经报道了使用CCD相机和两个滤光片通过双色方法确定的温度和发射率的二维分布。在这项研究中,提出了一种四色方法来提高温度和发射率的精度和精确度。我们使用四个带10 nm窄带通的光学滤波器进行测量,因为在温度确定的精度方面,使用窄带的测温方法优于使用宽带的测温方法。还通过双色方法确定温度和发射率的分布以进行比较。通过四色方法获得的结果具有比二色方法更高的精度和精度,并且我们可以认识到,所得的二维发射率分布清楚地说明了材料表面的几种情况。

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