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Optimization of finned solar photovoltaic phase change material (finned pv pcm) system

机译:翅片太阳能光伏相变材料(翅片PV PCM)系统优化

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Heat generation during the operation of the photovoltaic (PV) cell raises its temperature and results in reduced electrical output. The heat produced in the process can be removed by attaching phase change material (PCM) at the back of the PV panel which can contain the PV temperature substantially and increase its efficiency. Fins can be used inside the PCM container to enhance the heat transfer. In literature, it is observed that as soon as PCM is melted completely, the heat extraction rate of PCM reduces which again leads to increase in PV temperature. However, the study carrying out the optimization of Finned-PV-PCM system to keep PV temperature low during operation for different solar irradiance levels is not available in literature. Thus, in the current study, the most suitable depth of PCM container is calculated for different solar irradiance levels. In addition, how it is affected with spacing between successive fins, fin length and fin thickness has been studied. The best fin dimensions are also calculated. The results show that the most suitable depth of PCM container is 2.8 cm for Sigma I-T = 3 kWh/m(2)/ day and 4.6 cm for Sigma I-T = 5 kWh/m(2)/day for the chosen parameters. The best spacing between successive fins (to keep PV temperature low) is 25 cm, best fin thickness is 2 mm and best fin length is the one when it touches the bottom of the container. PV, PV-PCM and Finned-PV-PCM systems are also compared. For PV-PCM system (without fins), the most suitable depth of PCM container is 2.3 cm for Sigma I-T = 3 kWh/m(2)/day and 3.9 cm for Sigma I-T = 5 kWh/m(2)/day.
机译:光伏(PV)电池的操作期间的发热引起其温度并导致电输出降低。通过在PV面板背面附接相变材料(PCM)可以基本上包含PV温度并提高其效率,可以通过附着相变材料(PCM)来除去该方法中产生的热量。翅片可在PCM容器内使用,以增强传热。在文献中,观察到,一旦PCM完全熔化,PCM的热量提取率再次导致光伏温度的增加。然而,在文献中,实施实施芬金-PV-PCM系统的优化以保持PV温度低的PV温度不适用于文献。因此,在目前的研究中,计算用于不同的太阳辐照度水平的最合适的PCM容器深度。此外,研究了如何影响连续翅片之间的间距,翅片长度和鳍片厚度。还计算了最佳翅片尺寸。结果表明,对于Sigma I-T = 3kWh / m(2)/天,对于所选参数的Sigma I-T = 5 kWh / m(2)/天,Sigma I-T = 3 kWh / m(2)/天/天为4.6厘米,最合适的PCM容器深度为2.8厘米。连续翅片之间的最佳间距(保持光伏温度低)为25厘米,最佳翅片厚度为2毫米,最佳翅片长度是触摸容器底部的翅片长度。 PV,PV-PCM和Finned-PV-PCM系统也进行了比较。对于PV-PCM系统(没有翅片),对于Sigma I-T = 3 kWh / m(2)/天,最合适的PCM容器深度为2.3厘米。

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