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Design, performance and economic analysis of a nanofluid-based photovoltaic/thermal system for residential applications

机译:基于纳米流体的住宅应用光伏/热系统的设计,性能和经济分析

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摘要

Photovoltaic thermal systems (PVT) have higher electrical efficiencies than photovoltaic systems because they bring down solar cell temperature, thereby increasing the electrical yield of solar cells, while simultaneously providing thermal energy in the form of hot fluid. Use of nanofluids in such systems have become increasingly popular due to the superior thermal properties of nanofluids. A nanofluid-cooled photovoltaic/thermal system is designed to meet the electrical demands of a residential building for the climate of Dhahran, Saudi Arabia. Optimum collector design is selected through computational fluid dynamics after which daily and yearly performance evaluation of the system is analytically performed through Engineering Equation Solver. Additionally, an economic feasibility study is performed to demonstrate the financial benefits of the proposed system. Results show an increase of 8.5% in the electrical output of a water-cooled PVT system over a PV system and an increase of 13% in the thermal output of a nanofluid-cooled PVT system over a water-cooled PVT system. Furthermore, the cost of energy from the proposed system is 82% less than the domestic price of electricity in Saudi Arabia and the system could prevent the release of 16,974.57 tonnes of CO2 into the atmosphere.
机译:光伏热系统(PVT)比光伏系统具有更高的电效率,因为它们降低了太阳能电池的温度,从而提高了太阳能电池的电产量,同时提供了热流体形式的热能。由于纳米流体的优异热性能,在此类系统中使用纳米流体已变得越来越流行。纳米流体冷却的光伏/热系统旨在满足住宅建筑对沙特阿拉伯达兰气候的电力需求。通过计算流体动力学选择最佳的收集器设计,然后通过工程方程求解器对系统的每日和每年性能进行评估。此外,进行了经济可行性研究,以证明拟议系统的财务收益。结果显示,与水冷PVT系统相比,水冷PVT系统的电输出增加了8.5%,纳米流体冷PVT系统的热输出增加了13%。此外,拟议系统的能源成本比沙特阿拉伯的国内电价低82%,该系统可以防止向大气中释放16974.57吨二氧化碳。

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