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首页> 外文期刊>Solar Energy >Applications of hybrid nanofluids in solar energy, practical limitations and challenges: A critical review
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Applications of hybrid nanofluids in solar energy, practical limitations and challenges: A critical review

机译:杂交纳米流体在太阳能,实践局限性和挑战中的应用:批判性综述

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摘要

Solar energy is the ultimate perceived solution of incessantly proliferating energy crisis. Diverse range of solar energy conversion systems has been employed to convert solar energy into desired useful form. Performance of solar energy systems is subject to the type of the working fluid that they use for solar energy conversion and transportation. Application of hybrid nanofluids in solar energy systems as working fluid has turned out to be very gainful in terms of performance, owing to distinct thermal transportation characteristics of hybrid nano fluids. Current article has briefly reviewed the studies discoursing the performance of hybrid nanofluid based solar energy systems. Moreover, the performance of solar energy systems based on mono nanofluids has also been overviewed. Considering the importance, fabrication methods and characteristics of hybrid nanofluids as well as their implications on performance parameters of solar systems have been discussed. Reviewed studies have reported remarkable enhancement in power output and efficiency of these systems. However, there are several issues associated with hybrid nanofluids that have abstained the commercialization of binary nanofluid based systems. These issues include instability, increased friction factor, rheological issues, and increased pumping power. Subsequently, economic and ecologic gains of using binary nanofluids in solar energy systems are presented.
机译:太阳能是不断增殖能源危机的最终感知解决方案。已经采用不同范围的太阳能转换系统来将太阳能转化为所需的有用形式。太阳能系统的性能受到它们用于太阳能转换和运输的工作流体的类型。杂交纳米流体在太阳能系统中的应用,作为工作流体的杂交纳米流体的热传输特性不同的性能,原因在于性能。目前的文章简要介绍了涉及杂交纳米流体基于太阳能系统的性能的研究。此外,还概述了基于单纳米流体的太阳能系统的性能。讨论了杂交纳米流体的重要性,制备方法和特征以及它们对太阳系的性能参数的影响。综述的研究报告了这些系统的功率输出和效率的显着提高。然而,存在与杂交纳米流体有关的几个问题,其弃权抑制了二元纳米流体基础的系统的商业化。这些问题包括不稳定,增加摩擦因子,流变问题和增加的泵送能力。随后,提出了在太阳能系统中使用二元纳米流体的经济和生态增益。

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