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Efficiency of photon enhanced thermionic emission solar converters

机译:光子增强型热电子发射太阳能转换器的效率

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摘要

Photon Enhanced Thermionic Emission (PETE) is a recently proposed novel concept in solar energy conversion, combining thermal and photovoltaic carrier excitation with thermionic emission. A recent study has shown that PETE conversion efficiencies can theoretically rise above 40 at concentration of 1000 suns. We analyze two major aspects missing from previous treatment of PETE conversion efficiency: changes in the cathode's conduction band carrier concentration with the electrical operating point; and determination of the cathode temperature from a full thermal energy balance. The results show that the conversion efficiency is a monotonically increasing function of temperature, and a monotonically decreasing function of the cathode electron affinity. It is shown that PETE converter efficiency according to the modified model is higher than previously reported, but achieving very high efficiencies of over 40 requires high temperatures that may be difficult in practical implementation.
机译:光子增强热电子发射(PETE)是太阳能转换中最近提出的一种新颖概念,将热和光伏载流子激发与热电子发射结合在一起。最近的一项研究表明,PETE转换效率在1000个太阳集中时理论上可以提高到40以上。我们分析了PETE转换效率先前处理中缺少的两个主要方面:阴极导带载流子浓度随电工作点的变化;从完全的热能平衡确定阴极温度。结果表明,转化效率是温度的单调递增函数,是阴极电子亲和力的单调递减函数。结果表明,根据修改后的模型,PETE转换器的效率要高于先前报道的效率,但是要达到40的非常高的效率,则需要高温,而实际操作中可能很难做到这一点。

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