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首页> 外文期刊>Journal of Energy Resources Technology >Efficiency Enhancement of Photovoltaic/Thermal Module Using Front Surface Cooling Technique in Winter and Summer Seasons: An Experimental Investigation
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Efficiency Enhancement of Photovoltaic/Thermal Module Using Front Surface Cooling Technique in Winter and Summer Seasons: An Experimental Investigation

机译:冬季和夏季使用前表面冷却技术提高光伏/热敏组件效率的实验研究

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摘要

This paper presents the effect of the front surface water cooling on performance parameters (solar cell temperature, back surface temperature, outlet water temperature, electrical efficiency, overall efficiency, etc.) of photovoltaic/thermal (PV/T) module in both winter and summer seasons in Indian climatic conditions. A mathematical model of PV/T module considering energy balance equations has also been presented. A comparative analysis of performance parameters obtained analytically and experimentally has also been presented. A fair agreement has also been found between analytical and experimental results which is supported by correlation coefficient of approximately unity and root mean square error of 10-14%. By front surface water cooling, solar cell and back surface temperature of PV/T module have been found to decrease considerably which in turn resulted in enhanced electrical and overall efficiency of module in winter and summer seasons.
机译:本文介绍了在冬季和冬季,前表面水冷却对光伏/热(PV / T)模块的性能参数(太阳能电池温度,后表面温度,出水温度,电效率,总体效率等)的影响。印度气候条件下的夏季。还提出了考虑能量平衡方程的PV / T模块的数学模型。还提出了通过分析和实验获得的性能参数的比较分析。在分析结果和实验结果之间也找到了合理的协议,相关系数近似为1,均方根误差为10-14%。通过前表面水冷却,已发现PV / T模块的太阳能电池和后表面温度显着降低,这反过来又导致了冬季和夏季模块的电气和整体效率提高。

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