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Energy, exergy and environmental analysis of glazed and unglazed PVT system integrated with phase change material: An experimental approach

机译:与相变材料集成的玻璃和无玻璃PVT系统的能量,火用和环境分析:一种实验方法

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In the current study, the effects of using a mixture of pure water and ethylene glycol (EG) with a mass ratio of 50% on the performance of glazed and unglazed photovoltaic thermal systems (PVTs) integrated with a PCM layer (PVT/PCM) are investigated. The studied coolant fluids are pure water, pure EG (EG 100%), and a mixture of pure water and pure EG with a mass ratio of 50% (EG 50%). The outdoor experimental tests are performed at Mashhad, Iran on sunny days in August, and a thermodynamic study including energy and exergy analysis is carried out to assess the efficiencies of two PVT/PCM systems. The results show, although the thermal energy efficiency of PVTs is decreased by mixing EG and pure water, the thermal exergy efficiency is enhanced. In addition, both overall energy and exergy efficiencies of the PVT/PCM system reduce when EG is added as an impurity to the pure water. The results also indicate that the percentage of the energy losses decreases in glazed cases of water-based PVT/water, PVT/EG (50%), and PVT/EG (100%) by 9.28%, 23.33%, and 48.58%, respectively compared to the unglazed systems. In addition, environmental investigation indicates that, compared to the PV unit, using a PVT system significantly benefits CO2 mitigation from both thermodynamic approaches. Finally, the water/EG mixture introduces as an appropriate coolant fluid due to lower freezing point and higher overall energy and exergy with respect to pure EG and suggested for cold climate conditions.
机译:在当前的研究中,使用质量比为50%的纯水和乙二醇(EG)的混合物对与PCM层(PVT / PCM)集成的玻璃和非玻璃光伏热系统(PVT)的性能产生的影响被调查。研究的冷却液为纯水,纯EG(EG 100%)以及纯水与纯EG的质量比为50%(EG 50%)的混合物。八月的晴天,在伊朗马什哈德进行了室外实验测试,并进行了包括能量和火用分析的热力学研究,以评估两个PVT / PCM系统的效率。结果表明,尽管通过将EG和纯水混合降低了PVT的热能效率,但提高了热能效率。另外,当将EG作为杂质添加到纯水中时,PVT / PCM系统的总能量和火用效率都会降低。结果还表明,在水性PVT /水,PVT / EG(50%)和PVT / EG(100%)的玻璃情况下,能量损失的百分比降低了9.28%,23.33%和48.58%,与无釉系统相比。此外,环境调查表明,与PV装置相比,使用PVT系统显着地受益于两种热力学方法中的二氧化碳减排。最后,由于相对于纯EG而言较低的凝固点和较高的总能量和火用力,因此水/ EG混合物作为合适的冷却剂流体被引入,并建议用于寒冷气候条件。

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