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Heat transfer characteristics and performance evaluation of water-cooled PV/T system with cooling channel above PV panel

机译:PV面板上方具有冷却通道的水冷PV / T系统的传热特性和性能评估

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摘要

A three-dimensional numerical model of water-cooled PV/T system with cooling channel above PV panel was built to analyze the influences of mass flow rate, cooling channel height, inlet water temperature and solar radiation intensity on heat transfer characteristics of cooling channel and performance of system. The Nusselt numbers of bottom and top surfaces of cooling channel were calculated, and the energy and exergy efficiencies of PV/T system were obtained. Results show that the Nusselt numbers of bottom and top surfaces perform opposite trend along the flow direction, and the convection heat transfer of bottom surface is better than that of top surface for almost all of cases. There is opposite direction of heat transfer within a certain distance from the entrance when inlet temperature of cooling medium is less than ambient temperature. As for system performance, both thermal efficiency and thermal exergy efficiency have greater variation amplitude when compared with electric efficiency and electric exergy efficiency respectively. The overall exergy efficiency of system achieves maximum at the mass flow rate of 0.003 kg/s and cooling channel height of 5 mm. Besides, the performance between the present system and traditional system was compared and some different conclusions have been drawn. (C) 2018 Elsevier Ltd. All rights reserved.
机译:建立了在PV面板上方具有冷却通道的水冷式PV / T系统的三维数值模型,分析了质量流量,冷却通道高度,进水温度和太阳辐射强度对冷却通道传热特性的影响。系统性能。计算了冷却通道底面和顶面的努塞尔数,得到了PV / T系统的能量和火用效率。结果表明,底面和顶面的Nusselt数沿流动方向呈相反的趋势,并且几乎在所有情况下,底面的对流传热都比顶面的对流传热好。当冷却介质的入口温度低于环境温度时,在距入口一定距离内存在相反的传热方向。至于系统性能,当分别与电效率和电效率相比时,热效率和热效率效率具有较大的变化幅度。系统的总火用效率在质量流量为0.003 kg / s和冷却通道高度为5 mm时达到最大值。此外,比较了当前系统与传统系统之间的性能,得出了一些不同的结论。 (C)2018 Elsevier Ltd.保留所有权利。

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