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首页> 外文期刊>Journal of Energy Storage >Thermal performance of nanomaterial in solar collector: State-of-play for graphene
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Thermal performance of nanomaterial in solar collector: State-of-play for graphene

机译:太阳能收集器纳米材料的热性能:石墨烯的效力

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摘要

Several studies have performed various nanomaterials for the dispersion of working fluids, including copper oxide, alumina, and silica, and so forth in solar collectors. In this present study thermal performance of graphene nanofluid and hybrid, nanofluid has been considered mostly. The thermo-physical properties of the working fluid are significantly enhanced and the performance of solar collectors is therefore improved. This study summarizes the performance of different solar collectors using carbon-based nanofluids especially graphene. The influence of nanofluid concentration, temperature, and flow rate on the collector efficiency of the solar collectors was highlighted. Using graphene thermal conductivity increase by 17% sharp and using graphene derivatives develop almost a 40% increase. Viscosity enhances almost 50% by using graphene nanoparticles. By the way, graphene has stable properties, cheap in price, using a fluid flow mechanism in thermal collector graphene nanoparticles gives an excellent result. The most important and highlighted inherent properties of graphene are its contact angle which is responsible for conductivity. Higher surface area to volume production improves the heat transfer capacity of graphene nanofluids. In this review, the article elaborates on the graphene and graphene-based nanofluid superiority in the thermal solar collector. Graphene nanofluids perform a crucial role in the development of newer technologies ideal for thermal solar systems. This advanced type of graphene nano liquid has a strong potential for use in medium-temperature systems, for example, solar collectors, as innovative heat transfer fluids.
机译:几项研究表演了各种纳米材料,用于将工作流体分散,包括氧化铜,氧化铝和二氧化硅,在太阳能收集器中等等。在本发明的研究中,主要考虑了石墨烯纳米流体和杂交物的热性能。因此,改善了工作流体的热物理性质,因此改善了太阳能收集器的性能。本研究总结了使用基于碳纳米流体的不同太阳能收集器的性能。突出了纳米流体浓度,温度和流速对太阳能收集器的收集器效率的影响。利用石墨烯导热率锐利增加17%,使用石墨烯衍生物的发展几乎增加40%。粘度通过使用石墨烯纳米颗粒增强了几乎50%。顺便说一下,石墨烯具有稳定的特性,价格便宜,使用热集电极石墨烯纳米粒子中的流体流动机制给出了出色的结果。石墨烯最重要和强调的固有特性是其接触角,其负责电导率。较高的表面积为产量生产提高了石墨烯纳米流体的传热能力。在本综述中,本文阐述了热太阳能收集器中的石墨烯和石墨烯的纳米流体优势。石墨烯纳米流体在较新技术的开发中对热太阳系的理想开发至关重要。这种先进的石墨烯纳米液体具有强大的中温系统,例如太阳能收集器,作为创新的传热流体。

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