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EXERGY ANALYSIS OF A SOLAR PHOTOVOLTAIC MODULE

机译:过度的太阳能光伏模块分析

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PV energy is the direct conversion of solar radiation into electricity. In this paper, an analysis of the influence of parameters such as global irradiance or temperature in the performance of a PV installation has been carried out. A PV module was installed in a building at the University of Malaga, and these parameters were experimentally determined for different days and different conditions of irradiance and temperature. Moreover, IV curves were obtained under these conditions to know the open-circuit voltage and the short-circuit current of the module. With this information, and using the first law of thermodynamics, an energy analysis was performed to determine the energy efficiency of the installation. Similarly, using the second law of thermodynamics, an exergy analysis is used to obtain the exergy efficiency. The results show that the energy efficiency varies between 10% and 12% and the exergy efficiency between 14% and 17%. It was concluded that the exergy analysis is more suitable for studying the performance, and that only electric exergy must be considered as useful exergy. This exergy efficiency can be improved if heat is removed from the PV module surface, and an optimal temperature is reached.
机译:光伏能量是太阳辐射到电力的直接转换。在本文中,已经进行了对PV安装性能的平局辐照度或温度等参数的影响分析。 PV模块安装在马拉加大学的建筑物中,这些参数是针对不同天和不同辐照度和温度的不同状态确定的。此外,在这些条件下获得了IV曲线,以了解模块的开口电压和短路电流。利用这些信息,并使用第一热力学定律,进行了能量分析以确定安装的能量效率。同样,使用第二热力学定律,使用过度的分析来获得效率。结果表明,能量效率在10%至12%之间变化,高度效率为14%至17%。得出结论是,走动分析更适合研究性能,并且只有电力无法被认为是有用的。如果从PV模块表面除去热量,则可以改善这种效率,并且达到最佳温度。

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