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Numerical and Experimental Study on Energy Performance of Photovoltaic-Heat Pipe Solar Collector in Northern China

机译:北方地区光伏热管太阳能集热器能量性能的数值与实验研究

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Several studies have found that the decrease of photovoltaic (PV) cell temperature would increase the solar-to-electricity conversion efficiency. Water type PV/thermal (PV/T) system was a good choice but it could become freezing in cold areas of Northern China. This paper proposed a simple combination of common-used PV panel and heat pipe, called PV-heat pipe (PV-HP) solar collector, for both electrical and thermal energy generation. A simplified one-dimensional steady state model was developed to study the electrical and thermal performance of the PV-HP solar collector under different solar radiations, water flow rates, and water temperatures at the inlet of manifold. A testing rig was conducted to verify the model and the testing data matched very well with the simulation values. The results indicated that the thermal efficiency could be minus in the afternoon. The thermal and electrical efficiencies decreased linearly as the inlet water temperature and water flow rate increased. The thermal efficiency increased while the electrical efficiency decreased linearly as the solar radiation increased.
机译:多项研究发现,降低光伏(PV)电池温度将提高太阳能转换效率。水型光伏/热(PV / T)系统是不错的选择,但在中国北方的寒冷地区可能会结冰。本文提出了一种常用的光伏面板和热管(称为PV-HP太阳能集热器)的简单组合,以同时产生电能和热能。建立了简化的一维稳态模型,以研究在不同的太阳辐射,水流量和歧管入口处的水温下,PV-HP太阳能集热器的电和热性能。进行了测试装置以验证模型,并且测试数据与仿真值非常匹配。结果表明,下午的热效率可能为负。随着进水温度和水流量的增加,热效率和电效率线性下降。随着太阳辐射的增加,热效率增加而电效率线性下降。

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