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Application of nanofluids in plate heat exchanger: A review

机译:纳米流体在板式换热器中的应用

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Writing, or even making an attempt to write anything on or about Plate Heat Exchangers (Henceforth, PHE) would be no more than a futile effort to reassert and glorify an already stronghold state of PHEs, as is evident with the kind of multilayered and multi-tasked functions it performs, obviously in different forms, in various domains of work & walks of life, since a good long time. Nonetheless, in a bid to bring about a certain makeshift in the way the PHE has been functioning and sustaining, there was a need to revisit the structural pattern and the fluids that contribute to the performance of PHE. Summarily, this brings the researcher and designers to shift the focus not only from the conventional design but also to introduce a new substance which could further contribute to enhance the performance of the PHE. That is why, in recent times, the miniaturization of PHE and energy efficiency have become focal point of attention, discourse and research. While exploring for better alternates, the nanofluids have surfaced as probable (replaceable) substitutes. The Nanofluid is a relatively recent (in contrast with the PHEs) finding that promises, pronouncedly, greater heat absorbing and heat transport ability. The review article attempts to take a sneak peak into some of the important published articles that deal with the function and performance of PHEs using nanofluids. The first section of the paper presents observations by several authors on experimental and numerical results regarding thermal conductivity, viscosity, specific heat and heat transfer coefficients. The second section talks of application of nanofluids in plate heat exchangers. It has also examined the utility of nanofluids, particularly in PHEs, based on experiments and numerical studies. A review of previous works featuring experimental and numerical investigations seems to be suggesting, to the level of establishing, that nanofluids have great potential in increasing the overall performance of the plate heat exchangers. There is a further vital scope to work on the performance and utility of nanofluids and work on the equative proportions of its application, in the direction, the paper has made an attempt of. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在板式换热器(Henceforth,PHE)上或什至尝试写任何东西,只是重新定义和美化已经坚固的PHE的徒劳之举,这在多层和多用途中显而易见任务功能,很长一段时间以来,在不同的工作领域和不同领域显然以不同的形式执行。但是,为了使PHE的功能和维持方式有所改观,有必要重新研究有助于PHE性能的结构形式和流体。综上,这使研究人员和设计人员不仅将重点从常规设计转移到其他方面,而且还引入了一种新物质,该物质可能进一步有助于提高PHE的性能。因此,近年来,PHE的小型化和能源效率成为人们关注,讨论和研究的焦点。在寻找更好的替代品时,纳米流体已成为可能的(可替代的)替代品。纳米流体是一个相对较新的发现(与PHE相反),有望显着提高吸热和传热能力。这篇综述文章试图对一些重要的发表的文章进行初步探究,这些文章涉及使用纳米流体的PHE的功能和性能。本文的第一部分介绍了几位作者对有关导热系数,粘度,比热和传热系数的实验和数值结果的观察。第二部分讨论了纳米流体在板式换热器中的应用。根据实验和数值研究,它还检查了纳米流体的效用,特别是在PHE中。从以往的经验来看,对以实验和数值研究为特征的工作的回顾似乎表明,纳米流体在提高板式换热器的整体性能方面具有巨大的潜力。在本文尝试的方向上,还有一个至关重要的领域来研究纳米流体的性能和实用性,以及研究其等效应用比例。 (C)2015 Elsevier Ltd.保留所有权利。

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