PERFORMANCE OF ROOFTOP PHOTOVOLTAIC SYSTEM WITH ADDITIONAL WATER COOLING SYSTEM

S. Priyono, W. Wilopo, M. K. Ridwan
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Abstract

Improving solar power plant performance is considered quite important for existing and prospective users of rooftop solar power plants in Indonesia due to its unattractive economic value. One of the efforts to optimize the performance is the application of an additional cooling system on the plant's photovoltaic module. This study aimed to determine the effectiveness of temperature reduction of the applied cooling system on solar panel productivity. The research was performed on the existing rooftop solar power plant with a capacity of 3 kWp, located in Depok City with coordinates of 6°38'03.40" South Latitude and 106°82'03.49" East Longitude.The results showed that the additional water cooling system with a closed-loop pumping method on the installed solar module’s entire surface could improve the rooftop solar power plant performance with an average production increase of 15.7% in 7 days of study. Meanwhile, from an economic point of view, this cooling system installation payback period was 2 years.  
附加水冷却系统的屋顶光伏系统性能
提高太阳能发电厂的性能对于印度尼西亚屋顶太阳能发电厂的现有和潜在用户来说非常重要,因为它的经济价值不吸引人。优化性能的努力之一是在工厂的光伏组件上应用额外的冷却系统。本研究旨在确定应用冷却系统的温度降低对太阳能电池板生产力的有效性。该研究是在现有的3kwp屋顶太阳能发电厂进行的,该发电厂位于Depok市,坐标为南纬6°38'03.40",东经106°82'03.49"。结果表明,在安装的太阳能组件全表面加装闭环抽水方式的水冷却系统可以提高屋顶太阳能电站的性能,在7天的研究中,平均产量提高了15.7%。同时,从经济角度来看,该冷却系统的安装回收期为2年。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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