Non-Gray Radiation Exchange: The Internal Fractional Function Reconsidered

J. Lienhard
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Abstract

The radiation fractional function is the fraction of black body radiation below a given value of λT. Edwards and others have distinguished between the traditional, or “external”, radiation fractional function and an “internal” radiation fractional function. The latter is used for simplified calculation of net radiation from a non-gray surface when the temperature of an effectively black source is not far from the surface’s temperature, without calculating a separate total absorptivity. This paper examines the analytical approximation involved in the internal fractional function, with results given in terms of the incomplete zeta function. A rigorous upper bound on the difference between the external and internal emissivity is obtained. Calculations using the internal emissivity are compared to exact calculations for several models and materials. A new approach to calculating the internal emissivity is developed, yielding vastly improved accuracy over a wide range of temperature differences. The internal fractional function can be useful for certain simplified calculations.
非灰色辐射交换:重新考虑内部分数函数
辐射分数函数是黑体辐射低于给定值λT的分数。爱德华兹和其他人已经区分了传统的,或“外部”,辐射分数函数和“内部”辐射分数函数。后者用于简化非灰色表面的净辐射计算,当有效黑色源的温度离表面温度不远时,不需要单独计算总吸收率。本文研究了内部分数函数的解析近似,并给出了不完全zeta函数的结果。得到了外发射率与内发射率之差的严格上界。使用内部发射率的计算与几种模型和材料的精确计算进行了比较。一种计算内部发射率的新方法被开发出来,在很大的温差范围内大大提高了精度。内部分数函数对于某些简化计算是有用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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