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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Performance assessment of a serpentine tube PVT system using Cu and TiO2 nanofluids: an experimental study
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Performance assessment of a serpentine tube PVT system using Cu and TiO2 nanofluids: an experimental study

机译:使用 Cu 和 TiO2 纳米流体的蛇形管 PVT 系统的性能评估:一项实验研究

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A high photovoltaic (PV) panel temperature causes a reduction in the terminal voltage that results in low output power. Therefore, the extraction of heat from PV panels is a very important and crucial area to enhance the electrical power output. A PVT (Photovoltaic-Thermal) is a combined version of photovoltaics and solar thermal collector to generate electrical and thermal energies. Despite its popularity, the thermo-electrical performance of water-based PVT systems is not up to the mark because of the poor thermal conductivity of water. The present work experimentally investigates the concentration and MFR (mass flow rate) variations of copper (Cu) and titanium oxide (TiO2) nanofluids on the performance of a hybrid PVT system. The developed model is deployed to examine the performance of the PVT system for the weather conditions of Ghaziabad city (India). The research outcomes show how the PVT with Cu/water nanofluid exhibits a better thermo-electrical performance as compared to the PVT with TiO2/water nanofluid and water cooling. The results also show that using Cu/water nanofluid (1 vol ) as a coolant improved the PVT electrical efficiency by 5.98 concerning the basefluid. At a higher MFR, the average PV panel temperature is reduced that results in better cooling of the PVT system. At 0.03 kg/s MFR, a reduction in 17.18 degrees C temperature in the PV panel enhances the thermo-electrical efficiency by 2.58 and 5.43, respectively. GRAPHICS .
机译:光伏 (PV) 面板温度过高会导致端电压降低,从而导致输出功率降低。因此,从光伏电池板中提取热量是提高电力输出的一个非常重要和关键的领域。PVT(光伏热能)是光伏和太阳能集热器的组合版本,用于产生电能和热能。尽管水基PVT系统很受欢迎,但由于水的导热性差,其热电性能并不达标。本文通过实验研究了铜(Cu)和氧化钛(TiO2)纳米流体的浓度和MFR(质量流量)变化对混合PVT体系性能的影响。开发的模型用于检查PVT系统在加济阿巴德市(印度)天气条件下的性能。研究结果表明,与TiO2/水纳米流体和水冷相比,铜/水纳米流体的PVT表现出更好的热电性能。结果还表明,使用Cu/水纳米流体(1 vol %)作为冷却剂,PVT的电效率相对于基础流体提高了5.98%。在较高的MFR下,PV面板的平均温度降低,从而使PVT系统更好地冷却。在 0.03 kg/s MFR 下,光伏电池板温度降低 17.18 °C,热电效率分别提高 2.58% 和 5.43%。[图形] .

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