Thermoelectrical Analysis of a New Hybrid PV-Thermal Flat Plate Solar Collector

Y. Nassar, Khalid A. Amer, H. El-khozondar, A. Ahmed, Abdulgader Alsharif, M. Khaleel, M. Elnaggar, R. El-Khozondar, A. Salem
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引用次数: 1

Abstract

A practical design presented in this paper; a hybrid PV solar panel and flat plate solar air heating collector (HSC). When the PV solar cells are installed on the upper surface of the absorber plate at the entrance of air duct of the air heater solar collector, the system will generate both electricity and heat. Numerical model based on energy balance of a PV solar/thermal flat plate air heater solar collector (PV/T) has been developed. The analysis is aiming to identify the optimum contribution of the PV in the proposed HSC according to local transient energy behavior of the components of the HSC. The results substantiated the success of HSC technology in reducing the surface temperature of solar cells and increasing their productivity compared to a conventional PV solar panel. The optimum ratio of PV solar cell is found 25% of the total length of the HSC. Although the proposed HSC reduced the thermal efficiency of the solar collector from 42% to 39%, it increased the electrical efficiency of the PV solar cells from 11% to 14%. As a result, the overall efficiency of the proposed HSC was raised to 53%.
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一种新型混合光伏-热平板太阳能集热器的热电分析
本文给出了一个实用的设计方案;混合光伏太阳能电池板和平板太阳能空气加热集热器(HSC)。当将光伏太阳能电池安装在空气加热器太阳能集热器风道入口吸收板的上表面时,系统既发电又发热。建立了基于光伏太阳能/热平板空气加热器太阳能集热器(PV/T)能量平衡的数值模型。分析的目的是根据局部瞬态能量行为确定光伏在HSC中的最佳贡献。结果证实了HSC技术在降低太阳能电池表面温度和提高其生产力方面的成功,与传统的光伏太阳能电池板相比。PV太阳能电池的最佳比例为HSC总长度的25%。虽然提议的HSC将太阳能集热器的热效率从42%降低到39%,但它将光伏太阳能电池的电效率从11%提高到14%。因此,拟议的HSC的整体效率提高到53%。
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