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COOLING OF CONCENTRATOR PHOTOVOLTAIC CELLS USING MINI- SCALE JET IMPINGEMENT HEAT SINKS

机译:微型射流撞击热沉冷却浓缩器光伏电池

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In this study, an efficient cooling technique for concentrator photovoltaic (CPV) cells is proposed to enhance the system electrical efficiency and extend its lifetime. To do this, a comprehensive three-dimensional conjugate heat transfer model of CPV cells layers coupled with the heat transfer and fluid flow model inside jet impingement heat sink is developed. Four different jet impingement designs are compared. The investigated designs are (A) central inlet jet, (B) Hypotenuse inlet jet, (C) staggered inlet jet, and (D) conventional jet impingement design with side drainage. The effect of coolant flowrate on the CPV/T system performance is investigated. The model is numerically simulated and validated using the available experiments. The performance of CPV system is investigated at solar concentration ratios of 20 and coolant flowrate up to 6000g/min. It is found that increasing the flowrate from 60 g/min to 600 g/min decrease the maximum cell temperature by 31°C for the configuration D while increasing the flowrate from 600 g/min to 6000 g/min reduce the cell temperature by 20.2°C. It is also concluded that at a higher flowrate of 6000g/min, all the investigated configurations relatively achieve better temperature uniformity with maximum temperature differences of 0.9 °C, 2.1 °C, 3.6°C, and 3.9 °C for configurations A, B, C, and D respectively.
机译:在这项研究中,提出了一种用于聚光光伏(CPV)电池的高效冷却技术,以提高系统的电效率并延长其使用寿命。为此,开发了一个综合的CPV细胞层三维共轭传热模型,并结合了射流撞击散热器内部的传热和流体流动模型。比较了四种不同的射流冲击设计。研究的设计是(A)中央进气射流,(B)斜边进气射流,(C)交错进气射流和(D)带有侧排水的传统射流撞击设计。研究了冷却剂流量对CPV / T系统性能的影响。使用可用的实验对模型进行数值模拟和验证。在太阳能集中度为20且冷却剂流量高达6000g / min的情况下研究了CPV系统的性能。发现将流量从60 g / min增加到600 g / min会降低配置D的最高电池温度31°C,而将流量从600 g / min增加到6000 g / min会使电池温度降低20.2 ℃。还得出结论,在流量为6000g / min的情况下,所有研究的配置都相对实现了更好的温度均匀性,配置A,B, C和D分别。

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