Performance Investigation of a Photovoltaic Module Integrated with Different Optical Filters

A. Mostafa, S. E. Madbouly, M. Abd El-Hamid, E. Elgendy
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Abstract

Currently, 10 to 25% of the solar energy that reaches the PV unit surface is transformed into electricity, with the rest being dissipated as heat. The efficiency of converting the incident solar radiation into electrical power is greatly influenced by the heat accumulation on the photovoltaic modules. Coupling the PV module with optical filters are considered to be one of the most promising techniques to dramatically raise the electrical efficiency. In the present investigation, two optical filters employing different static working fluids coupled with a PV module are designed and compared with the stand-alone PV module experimentally. The results find that the efficiency of the optical filter using water reaches to about 60.02%, which is higher than the optical filter employing glycerin by implementing the Monte Carlo approach. When the optical filters are combined with the PV unit, the electrical power output is increased by around 60 and 64%, respectively, when compared to the PV module without the optical filter.
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不同滤光片集成光伏组件的性能研究
目前,到达光伏装置表面的太阳能有10%到25%转化为电能,其余部分以热量的形式散失。光伏组件上的热积累对入射太阳辐射转化为电能的效率有很大影响。光电组件与滤光片的耦合被认为是一种最有前途的技术,可以显著提高光电效率。在本研究中,设计了两个采用不同静态工作流体耦合光伏组件的滤光片,并与独立光伏组件进行了实验比较。结果表明,采用水的滤光片效率可达60.02%左右,比采用蒙特卡罗方法的甘油滤光片效率高。当光学滤光片与光伏组件组合使用时,与没有光学滤光片的光伏组件相比,输出的电功率分别增加了约60%和64%。
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