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Experimental investigations of using MWCNTs and graphene nanoplatelets water-based nanofluids as coolants in PVT systems

机译:使用MWCNTS和石墨烯纳米片水基纳米流体作为PVT系统冷却剂的实验研究

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In this study, a photovoltaic thermal collector)PVT(has been constructed in Karabuk University, Turkey to investigate the effects of utilizing multiwalled carbon nanotubes (MWCNT) and graphene nanoplatelets dispersed in water as a base fluid with a concentration of 0.5 wt% on the performance of PVT systems. Outdoor experiments were run with volume flow rate of 0.5 L/min for the aforementioned nanofluids and distilled water as a reference fluid. The study results, which were analyzed from energetic and exergetic viewpoints, have shown and revealed that the MWCNT-water nanofluid presented a better performance in terms of photovoltaic energetic conversion compared to graphene nanoplatelets-water nanofluid and distilled water, while graphene nanoplatelets-water nanofluid revealed the highest thermal energetic efficiency. Moreover adding thermal unit to photovoltaic module (PV) enhanced the total energetic efficiency by 53.4% for distilled water, 57.2% for MWCNT-water, and 63.1% for graphene-water. From the exergetic viewpoint, the increase in total exergetic efficiency was 11.2%, 12.1%, and 20.6% for PVT collector cooled by distilled water, MWCNT-water nanofluid, and graphene nanoplatelets-water nanofluid respectively.
机译:在本研究中,光伏热集电极)PVT(已在卡拉比克大学构建,以研究利用分散在水中的多壁碳纳米管(MWCNT)和石墨烯纳米键的效果,以浓度为0.5wt%的基础流体PVT系统的性能。用于上述纳米流体和蒸馏水作为参考流体的液体实验以0.5L / min的体积流速运行。研究结果从精力充沛和前进的观点分析,并透露了MWCNT - 水纳米流体在光伏大能量转化方面提出了更好的性能与石墨烯纳米薄荷 - 水纳米流体和蒸馏水相比,而石墨烯纳米薄荷 - 水纳米流体揭示了最高的热能效率。此外,将热单元加入光伏模块(PV)增强了总数蒸馏水的精力效率为53.4%,MWCNT水的57.2%,图石墨的63.1% E-水。通过蒸馏水,MWCNT水纳米流体和石墨烯纳米纳薄 - 水纳米流体,PVT收集器的总前进效率的增加11.2%,12.1%和20.6%。

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