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Photovoltaic thermal module and solar thermal collector connected in series: Energy and exergy analysis

机译:光伏热模块和太阳能集热器串联:能量和火用分析

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The photovoltaic thermal (PVT) module generates electricity with low temperature thermal energy while the solar thermal (ST) collector outputs only thermal energy without electricity. The combination of PVT module and ST collector in series is able to output high temperature thermal energy together with electricity simultaneously. In this research, the novel concept of series-connected PVT-ST is firstly introduced, and a two-dimensional transient mathematical model is developed to study four cases of the PVT-ST system with or without glass cover. Based on the numerical results, the series-connected PVT-ST system can output high temperature thermal energy with outlet water varying from 63.00 degrees C to 95.15 degrees C in different cases. Daily energetic and exergetic performance of four cases is also studied in this paper, revealing that case 1 (glazed PVT and glazed ST) obtains the highest overall energy and exergy efficiency of 41.51% and 17.63%, respectively. Due to the effect of glass cover, thermal energy and exergy output in case 1 can reach 4.10 kWh and 0.38 kWh on a selected day. However, case 4 (unglazed PVT and unglazed ST) has the lowest energy efficiency (28.97%) among four cases, but it performs best in the generation of electricity, which reaches 1.41 kWh during the experimental time. Moreover, a comparative study between the PVT-ST system and typical systems is conducted, and the results indicates that the PVT-ST system performs better than most conventional systems in terms of individual and overall efficiency from the viewpoint of energy and exergy.
机译:光伏热(PVT)模块以低温热能发电,而太阳能热(ST)收集器仅输出热能而无电。 PVT模块和ST集热器的串联组合可以同时输出高温热能和电能。在这项研究中,首先介绍了串联PVT-ST的新概念,并建立了二维瞬态数学模型来研究有无玻璃盖的PVT-ST系统的四种情况。根据数值结果,在不同情况下,串联的PVT-ST系统可以输出高温热能,出水温度从63.00摄氏度到95.15摄氏度不等。本文还研究了4例患者的日常精力和精力充沛表现,发现案例1(釉面PVT和釉面ST)获得的最高总能量和火用效率分别为41.51%和17.63%。由于玻璃盖的作用,案例1中的热能和火用输出在选定的一天可以达到4.10 kWh和0.38 kWh。但是,案例4(未上釉的PVT和未上釉的ST)的能效最低(48.9%),但在发电方面表现最佳,在实验时间内达到1.41 kWh。此外,对PVT-ST系统和典型系统进行了比较研究,结果表明,从能量和火用的角度来看,PVT-ST系统在个体效率和总体效率方面都比大多数常规系统更好。

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