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Performance improvement of solar photovoltaic/thermal heat pump system in winter by employing vapor injection cycle

机译:采用蒸汽喷射循环冬季太阳能光伏/热泵系统的性能改进

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摘要

Direct-expansion solar assisted heat pump (DX-SAHP) is a promising technology for saving energy. In this paper, vapor injection (VI) cycle system to DX-SAHP system is studied. Thermodynamic comparative analyses of ideal VI cycle and ideal conventional vapor compression cycle was carried out for verifying the advantages by applying VI cycle into DX-SAHP. Additionally, photovoltaic/thermal (PVT) modules were used in the system to harvest thermal energy and electric power. A PVT based solar heat pump system employing VI cycle (PVT-VISHP) was proposed, fabricated and investigated experimentally. Performance of the experimental prototype was subsequently evaluated for seven days in winter. The system's performance was evaluated based on the average ambient temperature of -1.13 degrees C and solar irradiation of 164.03 W/m(2). Results showed that the total generated electricity, heat, and consumed power of the system were 0.51 kWh, 23.68 kWh, and 7.24 kWh, respectively. Moreover, average heating coefficient of performance (COPth) and advanced coefficient of performance (COPPVT) of the PVT-VISHP system were 3.27 and 3.45, respectively. In the study, the ambient-evaporating temperature difference ranged from 9.2 degrees C to 17.1 degrees C. Furthermore, variations of injected vapor's pressure, mass flow rate, mass flow rate ratio, and subcooling effects were analyzed in detail. Performance of the PVT modules during a sunny day was tested. It was found that the PVT modules' average thermal collecting and PV efficiencies were 49.9% and 7.51%, respectively.
机译:直膨胀太阳能辅助热泵(DX-SAHP)是一种省能的有希望的技术。本文研究了对DX-SAHP系统的蒸汽注入(VI)循环系统。进行了理想的VI循环和理想常规蒸汽压缩循环的热力学对比分析,用于通过将VI循环施加到DX-Sahp中来验证优点。另外,在系统中使用光伏/热(PVT)模块以收获热能和电力。提出了一种采用VI周期(PVT-VISHP)的PVT太阳能热泵系统,制造和研究实验。实验原型的性能随后在冬季评估七天。根据-1.13摄氏度的平均环境温度和164.03W / m(2)的太阳照射来评估系统的性能。结果表明,该系统的总电力,热量和消耗功率分别为0.51千瓦时,分别为23.68千瓦时和7.24千瓦时。此外,PVT-VISHP系统的平均性能(COPTH)和高级性能系数(COPPVT)分别为3.27和3.45。在该研究中,环境蒸发温度范围为9.2℃至17.1℃。此外,详细分析了注入的蒸汽的压力,质量流速,质量流量比和过冷效果的变化。 PVT模块在阳光灿烂的日子中的性能进行了测试。发现PVT模块的平均热收集和PV效率分别为49.9%和7.51%。

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