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Power Density and Efficiency of Thermophotovoltaic Energy Conversion Using a Photonic-Crystal Emitter and a 2 -D Metal-Grid Filter

机译:使用光子晶体发射器和二维金属栅滤光片的热光伏能量转换的功率密度和效率

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摘要

Three-dimensional metallic photonic crystals have been suggested to be ideal candidates for thermal emitters in thermophotovoltaic energy conversion systems due to their high emission power in the allowed passband and also their emission suppression in the long-wavelength tail. In this paper, calculations were performed to compare a photonic-crystal emitter and a blackbody emitter in the thermodynamic limit of the maximum power density and efficiency that are achievable with an ideal photovoltaic cell. Additionally, realistic-source and GaSb photovoltaic-cell optical characteristics and a novel metal-grid filter are incorporated into the calculations. With an ideal antireflection coating, the measured photonic-crystal radiation was found to give a source electrical power density of 7.77 $hbox{W/cm}^{2}$ and a system efficiency of 47.58% with an effective source temperature of 1535 K.
机译:三维金属光子晶体由于在允许的通带中具有高发射功率,并且在长波长尾部中具有发射抑制特性,因此被认为是热光伏能量转换系统中热发射器的理想候选者。在本文中,进行了计算,以比较理想光电电池可达到的最大功率密度和效率的热力学极限中的光子晶体发射器和黑体发射器。此外,将真实光源和GaSb光伏电池的光学特性以及新型金属栅滤光片纳入了计算。使用理想的抗反射涂层,发现测得的光子晶体辐射可产生7.77 $ hbox {W / cm} ^ {2} $的源电功率密度,系统效率为47.58%,有效源温度为1535 K 。

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