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Investigation of the operational performance and efficiency of an alternative PV + PCM concept

机译:替代PV + PCM概念的运作性能和效率调查

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The significance of the temperature effect on the performance of photovoltaics (PVs) has implied the necessity to develop PV cooling methods in recent years. In this research, the inclusion of phase change materials (PCMs) through an alternative type of enclosure in tubular shape was proposed and investigated as an option of mitigating the PV operating temperature to enhance their efficiency and lifetime. Two PVs incorporating different PCMs (PV + PCM systems) and a conventional PV module (reference case) were experimentally tested to assess their energy performance under the Mediterranean conditions in Chania, Crete. As PCMs employed were selected Paraffins RT 27 and RT 31. The results indicated that a peak temperature decrement of 6.4 degrees C and 7.5 degrees C could be observed by using 260 g of PCM27 and PCM31, respectively. Hence, PV + PCM27 and PV + PCM31 systems exhibited increased energy generation by 4.19% and 4.24%, respectively, while the increment in the PV conversion efficiency by PCM integration ranged from 2.86 to 4.19%. The proposed configuration of PCM enclosures took advantage of the synergistic effect of wind, as demonstrated by the recorded daily temperature profiles of the PV + PCM27 and PV + PCM31 systems, even after the time of complete PCMs' melting.
机译:温度效应对光伏(PVS)性能的重要性暗示近年来开发光伏冷却方法的必要性。在本研究中,提出了通过管状形状的替代类型的外壳中的相变材料(PCM)作为减轻光伏操作温度的选择,以提高其效率和寿命。经过实验测试了包含不同PCM(PV + PCM系统)和传统光伏模块(参考情况)的PVS,以评估其在克里特岛地中海条件下的能量性能。作为所用PCM的PCMS是选自rt 27和RT 31.结果表明,通过使用260g PCM27和PCM31,可以观察到6.4℃和7.5℃的峰值温度衰减。因此,PV + PCM27和PV + PCM31系统分别增加了4.19%和4.24%的能量产生,而PV转换效率的增量由PCM集成的增量范围为2.86至4.19%。 PCM外壳的建议配置利用了风的协同效果,如PV + PCM27和PV + PCM31系统的记录日常温度轮廓所示,即使在完全PCMS熔化的时间之后也是如此。

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