Experimental Investigation of Laminar Convection Heat Transfer of Al2O3-Ethylene Glycol-Water Nanofluid as a Coolant in a Car Radiator

In this experimental study, heat transfer of a coolant nanofluid, obtained by adding alumina nanoparticles to Ethylene Glycol-water (60:40 by mass), in a car radiator has been investigated. For this purpose, an experimental setup has been designed and constructed. Firstly, to investigate the accurac...

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Main Authors: Ghanbarali Sheikhzadeh, Mohammad Mahdi Fakhari, H. Khorasanizadeh
Format: Article
Language:English
Published: Isfahan University of Technology 2017-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=41779&issue_ID=238
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spelling doaj-638e68e1c45740a9a062f5744be25c172020-11-24T22:11:41ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722017-01-01101209219.Experimental Investigation of Laminar Convection Heat Transfer of Al2O3-Ethylene Glycol-Water Nanofluid as a Coolant in a Car RadiatorGhanbarali Sheikhzadeh0Mohammad Mahdi Fakhari1H. Khorasanizadeh2university of KashanUniversity of BirjandUniversity of Kashan, KashanIn this experimental study, heat transfer of a coolant nanofluid, obtained by adding alumina nanoparticles to Ethylene Glycol-water (60:40 by mass), in a car radiator has been investigated. For this purpose, an experimental setup has been designed and constructed. Firstly, to investigate the accuracy of the results, the experiments have been done for the base fluid. Then the experiments have been performed for the nanofluid with different nanoparticles volume fractions of 0.003, 0.006, 0.009 and 0.012. To ensure laminar flow regime three coolant flow rates of 9, 11 and 13 lit/min have been tested. The thermophysical properties have been calculated using the recently presented temperature dependent models in the literature. According to the results, both the convective heat transfer coefficient and Nusselt number increase (about 9%) with increasing the coolant flow rate. Also, convective heat transfer coefficient increases with increasing the nanoparticles volume fraction. Although Nusselt number decreases when nanofluid is utilized, it enhances as the nanoparticles volume fraction increases. Based on the experimental results obtained, A new empirical correlation has been developed for average Nusselt number of Al2O3-EG-water nanofluid in developing region of flat tubes of car radiator for laminar flow and its maximum error is 3%.http://jafmonline.net/JournalArchive/download?file_ID=41779&issue_ID=238Experimental study; Car radiator; Al2O3-Ethylene Glycol-water nanofluid; Nusselt number.
collection DOAJ
language English
format Article
sources DOAJ
author Ghanbarali Sheikhzadeh
Mohammad Mahdi Fakhari
H. Khorasanizadeh
spellingShingle Ghanbarali Sheikhzadeh
Mohammad Mahdi Fakhari
H. Khorasanizadeh
Experimental Investigation of Laminar Convection Heat Transfer of Al2O3-Ethylene Glycol-Water Nanofluid as a Coolant in a Car Radiator
Journal of Applied Fluid Mechanics
Experimental study; Car radiator; Al2O3-Ethylene Glycol-water nanofluid; Nusselt number.
author_facet Ghanbarali Sheikhzadeh
Mohammad Mahdi Fakhari
H. Khorasanizadeh
author_sort Ghanbarali Sheikhzadeh
title Experimental Investigation of Laminar Convection Heat Transfer of Al2O3-Ethylene Glycol-Water Nanofluid as a Coolant in a Car Radiator
title_short Experimental Investigation of Laminar Convection Heat Transfer of Al2O3-Ethylene Glycol-Water Nanofluid as a Coolant in a Car Radiator
title_full Experimental Investigation of Laminar Convection Heat Transfer of Al2O3-Ethylene Glycol-Water Nanofluid as a Coolant in a Car Radiator
title_fullStr Experimental Investigation of Laminar Convection Heat Transfer of Al2O3-Ethylene Glycol-Water Nanofluid as a Coolant in a Car Radiator
title_full_unstemmed Experimental Investigation of Laminar Convection Heat Transfer of Al2O3-Ethylene Glycol-Water Nanofluid as a Coolant in a Car Radiator
title_sort experimental investigation of laminar convection heat transfer of al2o3-ethylene glycol-water nanofluid as a coolant in a car radiator
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2017-01-01
description In this experimental study, heat transfer of a coolant nanofluid, obtained by adding alumina nanoparticles to Ethylene Glycol-water (60:40 by mass), in a car radiator has been investigated. For this purpose, an experimental setup has been designed and constructed. Firstly, to investigate the accuracy of the results, the experiments have been done for the base fluid. Then the experiments have been performed for the nanofluid with different nanoparticles volume fractions of 0.003, 0.006, 0.009 and 0.012. To ensure laminar flow regime three coolant flow rates of 9, 11 and 13 lit/min have been tested. The thermophysical properties have been calculated using the recently presented temperature dependent models in the literature. According to the results, both the convective heat transfer coefficient and Nusselt number increase (about 9%) with increasing the coolant flow rate. Also, convective heat transfer coefficient increases with increasing the nanoparticles volume fraction. Although Nusselt number decreases when nanofluid is utilized, it enhances as the nanoparticles volume fraction increases. Based on the experimental results obtained, A new empirical correlation has been developed for average Nusselt number of Al2O3-EG-water nanofluid in developing region of flat tubes of car radiator for laminar flow and its maximum error is 3%.
topic Experimental study; Car radiator; Al2O3-Ethylene Glycol-water nanofluid; Nusselt number.
url http://jafmonline.net/JournalArchive/download?file_ID=41779&issue_ID=238
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AT mohammadmahdifakhari experimentalinvestigationoflaminarconvectionheattransferofal2o3ethyleneglycolwaternanofluidasacoolantinacarradiator
AT hkhorasanizadeh experimentalinvestigationoflaminarconvectionheattransferofal2o3ethyleneglycolwaternanofluidasacoolantinacarradiator
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