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Radiation pyrometric measurements with distance to the source effect and size-of-the-source effect corrections

机译:辐射高温测量测量与源效应的距离和源极效应校正

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Radiation pyrometers are widely used in industries and laboratories for non-contact temperature measurement of objects. In the case of very accurate pyrometry, the measurements are affected by two effects, namely, the size-of-source effect (SSE) and the distance to the source effect (DE). The lack of accuracy in the measurements due to the SSE is associated to variations in the size of the object for a fixed measuring distance, whereas for the DE is associated to variations of the measuring distance for a fixed size of the object. In this work we present a numerical method that can be used for the calculation of corrections for both effects. In this case the method is applied to a lensless double aperture pyrometer. The method is based on the theory of partial coherence for the calculation of the energy transport through the pyrometer. The corrections can be made for sources of any size and shape and for any distance. In this case we consider sources of circular shape given our black body radiators. We present experimental results that confirm our numerical calculations.
机译:辐射致光学计广泛用于物品的行业和实验室,用于对象的非接触式温度测量。在非常精确的热测定的情况下,测量受到两种影响的影响,即源极效应(SSE)和源效应的距离(DE)。由于SSE引起的测量中的测量中缺乏精度与用于固定测量距离的物体的尺寸的变化相关联,而对于DE与用于物体的固定尺寸的测量距离的变化相关联。在这项工作中,我们提出了一种可以用于计算两种效果的校正的数字方法。在这种情况下,该方法应用于无透镜双孔高温计。该方法基于偏相识的理论,用于通过高温计计算能量传输。可以对任何尺寸和形状的源和任何距离进行校正。在这种情况下,我们考虑给我们的黑色身体散热器给出圆形的来源。我们呈现实验结果证实了我们的数值计算。

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