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首页> 外文期刊>Solar Energy >Controlling the melting and solidification points temperature of PCMs on the performance and economic return of the water-cooled photovoltaic thermal system
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Controlling the melting and solidification points temperature of PCMs on the performance and economic return of the water-cooled photovoltaic thermal system

机译:控制PCMS对水冷光伏热系统性能和经济回报的熔化和凝固点温度

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摘要

The use of phase change materials (PCMs) in photovoltaic-thermal systems (PVT) is essential for developing PV systems and raising their productivity. PCM is distinguished by its many variations and properties, the most important of which is the melting point. In this study, the driven question and focus was on investigating which is better for use in a PVT, PCM systems with a high or low melting point? Two types of PCM were used in the study: paraffin wax (melting point 45 degrees C), Vaseline -petroleum jelly (melting point of 25 degrees C), and hybrid PCM (mixtures of the two PCMs in proportions of 25%, 50% and 75%). The study was conducted indoors by simulating the harshest condition in Iraq's weather in summer. The results showed that the wax and the Vaseline mixed entirely with an apparent decrease in the product's melting point. In contrast, the rest of the thermophysical properties of the product were relatively affected. The use of paraffin, petroleum jelly and 50% paraffin + 50% Vaseline in the PVT system caused a decrease in the surface temperatures of the photovoltaic cell, which resulted in a more significant improvement in the performance of the system. The maximum electrical efficiency reached was 13.7%, while the maximum thermal efficiency was 39.0%. Reducing paraffin melting point leads to better performance of PVT systems, as the hybrid paraffin (50% wax + 50% Vaseline) have better productivity than pure paraffin wax due to its lower melting point.
机译:在光伏 - 热系统(PVT)中使用相变材料(PCM)对于开发光伏系统并提高其生产率至关重要。 PCM的特征在于它的许多变化和性质,其中最重要的是熔点。在这项研究中,驱动的问题和重点是在调查中,更好地用于PVT,PCM系统,具有高或低熔点?研究中使用两种类型的PCM:石蜡蜡(熔点45℃),凡士林果冻(25℃的熔点),和混合PCM(两种PCM的混合物,比例为25%,50%和75%)。通过模拟伊拉克天气在夏天的最严重情况下,该研究在室内进行。结果表明,蜡和凡士林完全混合了产物熔点的表观降低。相反,产物的其余热物理性质相对受到影响。 PVT系统中石蜡,石油果冻和50%石蜡+ 50%凡士林在光伏电池的表面温度下降导致系统的性能更大的改善。达到的最大电效率为13.7%,而最大热效率为39.0%。减少石蜡熔点导致PVT系统的性能更好,因为由于其较低的熔点,杂合石蜡(50%蜡+ 50%vaseline)具有比纯石蜡的更好的生产率。

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