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首页> 外文期刊>European Journal of Mechanics, B. Fluids >Heat transfer enhancement with nanofluids in plate heat exchangers: A comprehensive review
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Heat transfer enhancement with nanofluids in plate heat exchangers: A comprehensive review

机译:纳米流体在板式换热器中的热传递增强:综合评论

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The application of nanofluids has dramatically increased from the past two decades. Nanofluids have elegantly captivated the attention of researchers nowadays. At present, various papers are being reported dealing with this interesting domain, allied with fascinating applications. However, the nanofluids being captives these days depicts the crucial need to bestow the comprehensive review of nanofluids application in distinct domains. This paper examines the utilization of nanofluids with distinct Plate Heat Exchanger (PHE) geometries. All the reported studies are alienated to two main categories: experimental and numerical. Furthermore, critical information regarding nanoparticle size, base fluids, analytical methods, heat transfer enhancement, flow regime, and pressure drop is presented in a comprehensive table in each section. Also, it was ultimately found that all the studies: analytical, experimental and numerical gave desired and appreciable thermal performance compared to conventional fluids. Author also reported the statistical analysis for the past published papers and the results show the increasing importance of nanofluids application in plate heat exchanger. Most of the studies showed preferred thermal behaviour, heat transfer enhancement, reduction in entropy generation and reduction in exergy destruction compared to the base fluids. An increase in Reynolds number can provide better heat transfer rates. The operating temperature of nanofluids plays a key role in the effectiveness of heat exchanger and heat transfer enhancement. Almost all the studies have demonstrated the preferred nanofluids thermal behaviour in plate heat exchanger, compared to the base fluid but Chevron and Corrugated type geometry of plate heat exchanger gives the appreciable enhancement in Nusselt number. (C) 2020 Elsevier Masson SAS. All rights reserved.
机译:纳米流体的应用在过去的二十年中大大增加。纳米流体现在典雅地迷住了研究人员的注意。目前,正在报告各种论文处理这个有趣的域名,与迷人的应用相盟。然而,这些天是纳米流体被俘虏描述了赋予纳米流体在不同域中纳米流体综合综述的关键需求。本文研究了用不同板式热交换器(PHE)几何形状的纳米流体的利用。所有报告的研究都疏远了两大类:实验和数值。此外,在每个部分的综合表中,在综合表中呈现了关于纳米颗粒尺寸,基础流体,分析方法,传热增强,流量和压降的关键信息。此外,最终发现所有的研究:与常规流体相比,分析,实验和数值对所需和明显的热性能进行了预期和明显的热性能。作者还报告了过去公布的论文的统计分析,结果表明纳米流体在板式换热器中的应用越来越重要。大多数研究显示出优选的热行为,传热增强,熵产生,并且与基础流体相比降低了熵的破坏。雷诺数的增加可以提供更好的传热速率。纳米流体的工作温度在热交换器和传热增强的有效性中起着关键作用。与基础流体相比,几乎所有的研究都证明了板式热交换器中的优选的纳米流体热行为,但是板式换热器的凹版网和瓦楞纸型几何形状给出了纽带数量的明显增强。 (c)2020 Elsevier Masson SAS。版权所有。

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