热光电伏打
散热器(发动机冷却)
发射率
材料科学
辐射冷却
辐射传输
吸收率
被动冷却
热辐射
光电子学
热的
光学
光伏
光伏系统
传热
能量转换效率
核工程
热力学
物理
电气工程
工程类
反射率
共发射极
作者
Etienne Blandre,Rodolphe Vaillon,Jérémie Drevillon
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2019-11-27
卷期号:27 (25): 36340-36340
被引量:19
摘要
The thermal behavior of a thermophotovoltaic system composed of a metallo-dielectric spectrally selective radiator at high temperature and a GaSb photovoltaic cell in the far field is investigated. Using a coupled radiative, electrical and thermal model, we highlight that, without a large conductive-convective heat transfer coefficient applied to the cell, the rise in temperature of the photovoltaic cell induces dramatic efficiency losses. We then investigate solutions to mitigate thermal effects, such as radiative cooling or the decrease of the emissivity or the temperature of the radiator. Without extending the radiating area beyond that of the cell, gains by radiative cooling are marginal. However, for a given radiator temperature, decreasing its emissivity is beneficial to conversion efficiency and, in cases of limited conductive-convective cooling capacities, even leads to larger electrical power outputs. More importantly, for a realistic radiator structure made of tungsten and hafnium oxide, larger conversion efficiencies are reached with smaller radiator temperatures because thermal losses and thus needs for cooling are less.
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