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Economic and environmental analysis of using metal-oxides/water nanofluid in photovoltaic thermal systems (PVTs)

机译:在光伏热系统(PVT)中使用金属氧化物/水纳米流体的经济和环境分析

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In the present study, an experimental setup for a PVT system is designed and fabricated to investigate the economic and environmental aspects of using different nano-oxides/water fluids. Selected coolant fluids are: pure water, ZnO/water, Al2O3/water and TiO2/water nanofluids. To make nanofluids, nanoparticles are dispersed in distilled water by 0.2% weight fractions (wt%), separately. Based on the experimental results the amount of annual emission reduction and cost saving are investigated for different coolants. Furthermore, the payback period of the PVTs is compared with that of a conventional PV unit. The results are presented in five different scenarios due to increasing of the electricity price, up to the final price and the government subsidies for the renewable energy sources (1st: 10% annual price increasing, with no subsidy, 2nd: linear increasing price, with no subsidy, 3rd: 10% the annual price increasing, 50% subsidy, 4th: linear price increasing, 50% subsidy and 5th: linear price increasing, 75% subsidy). From the energy viewpoint, by using pure water, PVT/TiO2, PVT/ZnO and PVT/Al2O3, the size reduction of the PVT system in comparison with that of the PV is 21, 32, 33 and 24%, respectively, and from the exergy viewpoint these values are about 5, 6, 7, 6%, respectively. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本研究中,设计并制造了PVT系统的实验装置,以研究使用不同的纳米氧化物/水流体的经济和环境方面。选择的冷却液为:纯水,ZnO /水,Al2O3 /水和TiO2 /水纳米流体。为了制备纳米流体,将纳米颗粒分别以0.2%重量分数(wt%)分散在蒸馏水中。根据实验结果,研究了不同冷却剂的年减排量和成本节省量。此外,将PVT的投资回收期与常规PV装置的投资回收期进行了比较。由于电价上涨,最终价格上涨以及政府对可再生能源的补贴,结果呈现在五种不同的情况下(第一种:年度价格上涨10%,无补贴,第二种:线性价格上涨,其中无补贴,第3位:年度价格提高10%,补贴50%,第4位:线性价格提高,补贴50%,第5位:线性价格提高,补贴75%)。从能量的角度来看,通过使用纯净水,PVT / TiO2,PVT / ZnO和PVT / Al2O3,与PV相比,PVT系统的尺寸减小分别为21%,32%,33%和24%,并且从火用角度来看,这些值分别约为5、6、7、6%。 (C)2018 Elsevier Ltd.保留所有权利。

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