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Entropy flow and generation in radiative transfer between surfaces

机译:表面之间的辐射传递中的熵流和产生

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Entropy of radiation has been used to derive the laws of blackbody radiation and determine the maximum efficiency of solar energy conversion. Along with the advancement in thermophotovoltaic technologies and nanoscale heat radiation, there is an urgent need to determine the entropy flow and generation in radiative transfer between nonideal surfaces when multiple reflections are significant. This paper investigates entropy flow and generation when incoherent multiple reflections are included, without considering the effects of interference and photon tunneling. The concept of partial equilibrium is applied to interpret the monochromatic radiation temperature of thermal radiation, T_λ(λ,Ω), which is dependent on both wavelength λ and direction Ω. The entropy flux and generation can thus be evaluated for nonideal surfaces. It is shown that several approximate expressions found in the literature can result in significant errors in entropy analysis even for diffuse-gray surfaces. The present study advances the thermodynamics of nonequilibrium thermal radiation and will have a significant impact on the future development of thermophotovoltaic and other radiative energy conversion devices.
机译:辐射的熵已用于推导黑体辐射定律,并确定太阳能转换的最大效率。随着热光电技术和纳米级热辐射的发展,当多次反射很明显时,迫切需要确定非理想表面之间的辐射传递中的熵流和产生。本文研究了包括非相干多次反射时的熵流和产生,而不考虑干涉和光子隧穿的影响。应用部分平衡的概念来解释热辐射的单色辐射温度T_λ(λ,Ω),该温度取决于波长λ和方向Ω。因此,可以评估非理想表面的熵通量和产生。结果表明,文献中发现的几种近似表达式即使在漫灰色表面上也可能导致熵分析中的重大误差。本研究提高了非平衡热辐射的热力学,并将对热光伏和其他辐射能转换装置的未来发展产生重大影响。

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