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A review on the application of hybrid nanofluids for parabolic trough collector: Recent progress and outlook

机译:杂交纳米流体在抛物线槽收集器中的应用综述:最近的进展与展望

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摘要

By far, the Parabolic trough collector (PTC) is the most established solar concentrating technology worldwide. This paper draws a comparison among various studies done earlier in the domain to bring forth different models and mediums used to evaluate the effect of nanofluids on thermal parameters for PTC providing an optimum output, resultantly. The study also reveals that by using nanofluid and hybrid nanofluids as heat transfer fluid (HTF) inside the absorber tube of solar collector, the thermal and optical characteristics can be enhanced. Reported papers in literature mention stability, effect on PTC & rsquo;s performance by implementing various novel designs, collector efficiency enhancement by using various inserts, and selecting proper hybrid nanomaterial into the base fluid. Varied experimental studies report that using hybrid nanofluid results in a more significant enhancement in thermal properties viz-a-viz than the mono fluids. A close look at the results of some of the notable works of the domain explicitly implies that for enhancing the thermal conductivity of nanofluid, metal oxide hybrid nanofluids are more promising than the oxide ones in a rather & lsquo;pecking order & rsquo;. The study also verges on the proposition that the thermal properties of nanofluid can be accelerated by the usage of hybrid nanofluid instead of mono nanofluid, as a medium, into a more efficient hybrid structure. Conclusively, this review advances the understanding of optimizing alteration parameters for obtaining maximum increase in outcomes and offers substantially adequate understanding for choosing specific techniques to enhance the overall efficiency of PTC, which can be used as a guideline for future trends.(c) 2021 Elsevier Ltd. All rights reserved.
机译:到目前为止,抛物线槽收集器(PTC)是全球最成熟的太阳能集中技术。本文在域中提前完成的各种研究中,采用不同的模型和培养基,用于评估纳米流体对PTC热参数的影响,从而产生最佳输出。该研究还揭示了通过在太阳能收集器的吸收管内使用纳米流体和杂交纳米流体作为传热流体(HTF),可以提高热和光学特性。报告文学中的纸张提到稳定性,对PTC&rsquo的影响,通过使用各种插入物来实现各种新颖设计,收集器效率增强,并选择适当的杂交纳米材料进入基础流体。不同的实验研究报告说,使用杂种纳米流体导致热处理比单液体的热性能更显着提高。仔细看看域的一些显着作品的结果明确意味着为了提高纳米流体的导热率,金属氧化物杂交纳米流体比相当氧化物氧化物含量更大;啄食顺序’该研究还逆向纳米流体的热性能可以通过使用杂交纳米流体而不是单纳米流体,作为培养基的主题来加速到更有效的杂化结构中。结论,本综述促进了了解优化改变参数,以获得成果的最大增加,并提供基本上适当的理解,以提高PTC的整体效率,可以作为未来趋势的指导。(c)2021 Elsevier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2021年第10期|126031.1-126031.31|共31页
  • 作者单位

    Dr APJ Abdul Kalam Tech Univ Uttar Pradesh Inst Engn & Technol Mech Engn Dept Lucknow 226021 Uttar Pradesh India;

    Dr APJ Abdul Kalam Tech Univ Uttar Pradesh Inst Engn & Technol Mech Engn Dept Lucknow 226021 Uttar Pradesh India;

    Univ Sharjah Sustainable & Renewable Energy Engn Dept POB 27272 Sharjah U Arab Emirates;

    Dr APJ Abdul Kalam Tech Univ Uttar Pradesh Inst Engn & Technol Mech Engn Dept Lucknow 226021 Uttar Pradesh India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hybrid PTC; Hybrid nanofluids; CFD; CNTs; HTF; Solar collector; Thermal performance;

    机译:杂交PTC;杂交纳米流体;CFD;CNT;HTF;太阳能收集器;热性能;

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