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Numerical simulation and experimental validation of a photovoltaic/thermal system based on a roll-bond aluminum collector

机译:基于压焊铝集热器的光伏/热力系统的数值模拟和实验验证

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In this paper, the performance of a polycrystalline silicon photovoltaic module and photovoltaic/thermal module are experimentally investigated under outdoor conditions, using a roll-bond thermal collector attached on the backside of the photovoltaic module. Furthermore, the temperature, pressure and velocity distributions across the photovoltaic/thermal module are simulated using a steady state thermal model. Compared with the photovoltaic module, the performances of photovoltaic/thermal module with and without the coolant circulation are both examined using a water volume of 100 L and a coolant mass flow rate of 0.034 kg/s. Using a design with a timed supplement water strategy, the electrical energy produced by the photovoltaic/thermal system has been increased by 3.25%. Compared without supplement before, the electrical energy can be extra increased more than 1%. A good agreement is found between simulated and experimental results. There is no doubt that the output performance of the photovoltaic/thermal system can be improved effectively by the design of timed supplement water. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,使用附着在光伏模块背面的辊式集热器,在室外条件下对多晶硅光伏模块和光伏/热模块的性能进行了实验研究。此外,使用稳态热模型模拟了光伏/热模块上的温度,压力和速度分布。与光伏组件相比,使用100 L的水量和0.034 kg / s的冷却剂质量流量来检查具有/不具有冷却剂循环的光伏/热模块的性能。使用具有定时补水策略的设计,光伏/热力系统产生的电能增加了3.25%。与之前没有补充的情况相比,电能可以额外增加1%以上。在模拟结果和实验结果之间找到了很好的一致性。毫无疑问,通过设计定时补充水可以有效地改善光伏/热力系统的输出性能。 (C)2019 Elsevier Ltd.保留所有权利。

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