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Experimental Investigation on Energy Performance of hybrid PV/T-PCM system

机译:混合PV / T-PCM系统能量性能的实验研究

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Photovoltaic (PV) energy is the most promising sustainable source but it depends on solar radiation and temperature. The PV panel electrical efficiency decrease because of rising temperature in the solar module. To overcome this particular problem the photovoltaic thermal (PV/T) a hybrid system can be a suitable technology and extracting heat and electricity from the same module to improve the overall efficiency. Another major limitation of those hybrid PV/T systems, those are only usable at daytime. Use phase change materials (PCM) in PV/T collectors as an intermediate thermal storage media offers a promising solution to this problem by storing large amount of heat. Lauric acid as PCM materials are used for thermal storage system. The PV/T-PCM hybrid system has been considered at parallel 2-side serpentine thermal absorber unique design with different water flow rates viz. 0.5, 1, 2, 3 & 4 liter per minutes (LPM) to get the enhanced performance of the system. These hybrid systems has been compared with a conventional solar PV module.
机译:光伏(PV)能源是最有前途的可持续能源,但它取决于太阳辐射和温度。由于太阳能模块中温度的升高,PV面板的电效率降低。为了克服这个特定问题,光伏热(PV / T)混合系统可以是一种合适的技术,可以从同一模块中提取热量和电能,从而提高整体效率。这些混合PV / T系统的另一个主要限制是,这些限制只能在白天使用。在PV / T收集器中使用相变材料(PCM)作为中间热存储介质,可以通过存储大量热量来解决该问题。月桂酸作为PCM材料用于蓄热系统。 PV / T-PCM混合系统已被认为是具有不同水流量的平行2侧蛇形吸热器的独特设计。每分钟0.5、1、2、3和4升(LPM),以获得系统的增强性能。这些混合系统已与常规太阳能PV模块进行了比较。

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