Heat transfer performance and exergy analyses of a corrugated plate heat exchanger using metal oxide nanofluids

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Date

2014

Authors

M. A. Khairul
Mohammad A. Alim
Islam Mohammed Mahbubul
Rahman Saidur
A. Hepbasli
Altab Hossain

Journal Title

Journal ISSN

Volume Title

Publisher

Elsevier Ltd

Open Access Color

Green Open Access

Yes

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No
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Top 10%
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Top 10%
Popularity
Top 1%

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Abstract

Heat exchangers have been widely used for efficient heat transfer from one medium to another. Nanofluids are potential coolants which can afford excellent thermal performance in heat exchangers. This study examined the effects of water and CuO/water nanofluids (as coolants) on heat transfer coefficient heat transfer rate frictional loss pressure drop pumping power and exergy destruction in the corrugated plate heat exchanger. The heat transfer coefficient of CuO/water nanofluids increased about 18.50 to 27.20%with the enhancement of nanoparticles volume concentration from 0.50 to 1.50% compared to water. Moreover improvement in heat transfer rate was observed for nanofluids. On the other hand exergy loss was reduced by 24% employing nanofluids as a heat transfermediumwith comparing to conventional fluid. Besides 34% higher exergetic heat transfer effectiveness was found for 1.5 vol.% of nanoparticles. It has a small penalty in the pumping power. Hence the plate heat exchanger performance can be improved by adapting the working fluid with CuO/water nanofluids. © 2013 Elsevier Ltd. © 2017 Elsevier B.V. All rights reserved.

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Keywords

Corrugated Plate Heat Exchanger, Exergetic Heat Transfer Effectiveness, Exergy Loss, Heat Transfer Rate, Nanofluid, Pumping Power, Coolants, Copper Oxides, Corrugated Metal, Exergy, Heat Exchangers, Heat Transfer, Heat Transfer Coefficients, Metals, Nanoparticles, Plate Metal, Pumps, Corrugated Plate Heat Exchangers, Exergetic, Exergy Loss, Heat Transfer Rate, Nanofluids, Pumping Power, Nanofluidics, Coolants, Copper oxides, Corrugated metal, Exergy, Heat exchangers, Heat transfer, Heat transfer coefficients, Metals, Nanoparticles, Plate metal, Pumps, Corrugated plate heat exchangers, Exergetic, Exergy loss, Heat transfer rate, Nanofluids, Pumping power, Nanofluidics, Exergetic Heat Transfer Effectiveness, Corrugated Plate Heat Exchanger, Heat Transfer Rate, Pumping Power, Exergy Loss, Nanofluid, exergy, nanofluids, metal oxide semiconductors, XXXXXX - Unknown, transmission, 621, thermal conductivity, heat

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

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OpenCitations Citation Count
136

Source

International Communications in Heat and Mass Transfer

Volume

50

Issue

Start Page

8

End Page

14
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Citations

CrossRef : 141

Scopus : 168

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Mendeley Readers : 150

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