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State-of-the-art review of nanofluids in solar collectors: A review based on the type of the dispersed nanoparticles

机译:对太阳能收集器纳米流体的最先进审查:基于分散纳米粒子的类型的综述

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摘要

Nanofluids as a new generation of fluids have attracted a lot of research works. There is growing evidence that the nanofluids are more suitable for various heat transfer applications than the conventional fluids. One of the most important parameters in the thermal behavior of such fluids is the type of nanoparticles dispersed in the base fluid. The present review paper is devoted to provide an overview on the distinct types of particles used in nanofluid research with emphasis on their application in solar collectors. The impact of nanofluids on heat transfer under different dispersive particles is explained for both numerical and experimental researches. Works concerning the application of nanofluids in solar collectors are singled out and analyzed. The nanoparticles are classified into metallic and non-metallic and the various configurations of solar collectors are considered. The review indicates that the flat plate solar collectors are the most investigated among the considered configurations. It is also shown that Al2O3-based nanofluids have been widely considered in these collectors compared to other nanofluids. In addition, the non-metallic based nanofluids can be more useful for the efficiency enhancement of solar collectors compared to metal based nanofluids. Some negative aspects related to nanofluids are also pointed out such as the thermo-physical instability and the reduced efficiency at high nanoparticle volume fraction. Finally, the general conclusions are drawn and future directions for research are proposed. It is noted that the present review concerns the nanofluids based on a single nanoparticle type. Hybrid nanofluids are subject to a future review.
机译:纳米流体作为新一代液体吸引了大量的研究作品。日益增长的证据表明纳米流体比常规流体更适合各种传热应用。这种流体的热行为中最重要的参数之一是分散在基础流体中的纳米颗粒的类型。本文旨在概述纳米流体研究中使用的不同类型粒子的概要,重点是在太阳能收集器中的应用。对数值和实验研究说明了纳米流体对不同分散颗粒下的热传递的影响。关于应用纳米流体在太阳能收集器中的应用进行了挑剔并分析。纳米颗粒分为金属和非金属,并且考虑了太阳能收集器的各种配置。审查表明,在考虑的配置中,平板太阳能收集器是最受研究的。还表明,与其他纳米流体相比,这些收集器中已广泛考虑基于Al2O3的纳米流体。此外,与基于金属的纳米流体相比,非金属基纳米流体对太阳能收集器的效率提升更有用。还指出了与纳米流体相关的一些消极方面,例如热物理不稳定性和高纳米颗粒体积级分的效率降低。最后,提出了一般的结论,提出了未来的研究方向。注意,本综述涉及基于单个纳米颗粒型的纳米流体。杂交纳米流体受到未来的审查。

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