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首页> 外文期刊>Energy Conversion & Management >Performance of a parabolic trough concentrating photovoltaic/thermal system: Effects of flow regime, design parameters, and using nanofluids
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Performance of a parabolic trough concentrating photovoltaic/thermal system: Effects of flow regime, design parameters, and using nanofluids

机译:抛物槽式集中光伏/热系统的性能:流动方式,设计参数和使用纳米流体的影响

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The aim of this study is to simulate a parabolic trough concentrating photovoltaic/thermal (CPV/T) system and to investigate its performance from energy and exergy viewpoints in both laminar and turbulent flow regimes. After validating the proposed model with available experimental data from the literature, the effects of various parameters, including concentration ratio, pipe length, and diameter, on the performance of the system were examined in detail. Further, the effects of glazing the system and using nanofluids as the working fluid on the system efficiency were determined and discussed. The performance of the CPV/T system was also compared to that of a flat-plate photovoltaic/thermal (PV/T) system. The results showed that increasing the pipe length from 0.5 to 5 m decreases the total energy efficiency by about 9.33% in the laminar regime and 1.09% in the turbulent regime, while it increases the total exergy efficiency by about 33.65% and 10.37% in the laminar and turbulent regime, respectively. The increment of the pipe diameter has a negligible impact on the system performance, for a given flow rate. The results also indicated that applying nanofluids in the laminar flow is more effective compared to the case of the turbulent regime. Furthermore, the PV/T system can reach greater energy and exergy efficiency compared to the CPV/T system, whereas employing nanofluid in the CPV/T system is more efficient compared to the case of the PV/T system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是模拟一个抛物槽式聚光光伏/热能(CPV / T)系统,并从层流和湍流状态的能量和火用角度研究其性能。在使用文献中的可用实验数据验证了提出的模型后,详细检查了各种参数(包括浓度比,管道长度和直径)对系统性能的影响。此外,确定并讨论了给系统上釉并使用纳米流体作为工作流体对系统效率的影响。还将CPV / T系统的性能与平板式光伏/热(PV / T)系统的性能进行了比较。结果表明,将管长从0.5增加到5 m会使层流状态下的总能效降低约9.33%,在湍流状态下使总能效降低1.09%,而在层流状态下使总火用效率分别提高约33.65%和10.37%。层流和湍流状态。对于给定的流量,管径的增加对系统性能的影响可以忽略不计。结果还表明,与湍流状态相比,在层流中应用纳米流体更为有效。此外,与CPV / T系统相比,PV / T系统可以达到更高的能量和火用效率,而与PV / T系统相比,在CPV / T系统中采用纳米流体的效率更高。 (C)2017 Elsevier Ltd.保留所有权利。

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