Effect of Variable Thermal Expansion Coefficient and Nanofluid Properties on Steady Natural Convection in an Enclosure
Steady state natural convection is numerically investigated in an enclosure using variable thermal conductivity, viscosity and thermal expansion coefficient of Al2O3–water nanofluid. This study has been conducted for a wide range of Rayleigh numbers (103≤ Ra ≤ 106), concentrations of nanoparticles (...
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Shahid Chamran University of Ahvaz
2017-10-01
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doaj-c835720d2a9744659a85b3ca4d282f712020-11-24T23:00:03ZengShahid Chamran University of AhvazJournal of Applied and Computational Mechanics2383-45362383-45362017-10-013424025010.22055/jacm.2017.21451.109912714Effect of Variable Thermal Expansion Coefficient and Nanofluid Properties on Steady Natural Convection in an EnclosureEsmaeil Ghahremani0Reihaneh Ghaffari1Hossein Ghadjari2Javad Mokhtari3Department of Energy Engineering and Physics, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Islamic Republic of IranUniversity of Calgary, CanadaDepartment of Energy Engineering and Physics, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Islamic Republic of IranDepartment of Mathematics, Isfahan (Khorasgan) Branch, Islamic Azad University, Isfahan, IranSteady state natural convection is numerically investigated in an enclosure using variable thermal conductivity, viscosity and thermal expansion coefficient of Al2O3–water nanofluid. This study has been conducted for a wide range of Rayleigh numbers (103≤ Ra ≤ 106), concentrations of nanoparticles (0% ≤ Φ ≤ 7%), enclosure aspect ratios (0.5 ≤ AR ≤ 2) and temperature differences between the cold and the hot walls (1≤ ∆T≤ 30). The main idea in this study is about the effect of temperature on natural convection pattern of nanofluid by changing nanoparticles concentration. Also, changing thermal expansion coefficient with temperature is considerd in this study which will have significant effects on natural convection and has not been considerd before. In low Rayleigh numbers (Ra= 103) and for cavities with AR≥1, the pattern shown in the average Nusselt number versus volume fraction of nanoparticles diagram deteriorates by increasing ∆T. However, for other cases, increasing ∆T has a positive effect on Nu-Φ diagram. The actual Nuselt number curve depicts that dispersing nanoparticles in base fluid deteriorate natural convection heat transfer which is in a good agreement with experimental works.http://jacm.scu.ac.ir/article_12714_55c5dafae1098d72acb22f407106098c.pdfnanofluidNatural convectionvariable property |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Esmaeil Ghahremani Reihaneh Ghaffari Hossein Ghadjari Javad Mokhtari |
spellingShingle |
Esmaeil Ghahremani Reihaneh Ghaffari Hossein Ghadjari Javad Mokhtari Effect of Variable Thermal Expansion Coefficient and Nanofluid Properties on Steady Natural Convection in an Enclosure Journal of Applied and Computational Mechanics nanofluid Natural convection variable property |
author_facet |
Esmaeil Ghahremani Reihaneh Ghaffari Hossein Ghadjari Javad Mokhtari |
author_sort |
Esmaeil Ghahremani |
title |
Effect of Variable Thermal Expansion Coefficient and Nanofluid Properties on Steady Natural Convection in an Enclosure |
title_short |
Effect of Variable Thermal Expansion Coefficient and Nanofluid Properties on Steady Natural Convection in an Enclosure |
title_full |
Effect of Variable Thermal Expansion Coefficient and Nanofluid Properties on Steady Natural Convection in an Enclosure |
title_fullStr |
Effect of Variable Thermal Expansion Coefficient and Nanofluid Properties on Steady Natural Convection in an Enclosure |
title_full_unstemmed |
Effect of Variable Thermal Expansion Coefficient and Nanofluid Properties on Steady Natural Convection in an Enclosure |
title_sort |
effect of variable thermal expansion coefficient and nanofluid properties on steady natural convection in an enclosure |
publisher |
Shahid Chamran University of Ahvaz |
series |
Journal of Applied and Computational Mechanics |
issn |
2383-4536 2383-4536 |
publishDate |
2017-10-01 |
description |
Steady state natural convection is numerically investigated in an enclosure using variable thermal conductivity, viscosity and thermal expansion coefficient of Al2O3–water nanofluid. This study has been conducted for a wide range of Rayleigh numbers (103≤ Ra ≤ 106), concentrations of nanoparticles (0% ≤ Φ ≤ 7%), enclosure aspect ratios (0.5 ≤ AR ≤ 2) and temperature differences between the cold and the hot walls (1≤ ∆T≤ 30). The main idea in this study is about the effect of temperature on natural convection pattern of nanofluid by changing nanoparticles concentration. Also, changing thermal expansion coefficient with temperature is considerd in this study which will have significant effects on natural convection and has not been considerd before. In low Rayleigh numbers (Ra= 103) and for cavities with AR≥1, the pattern shown in the average Nusselt number versus volume fraction of nanoparticles diagram deteriorates by increasing ∆T. However, for other cases, increasing ∆T has a positive effect on Nu-Φ diagram. The actual Nuselt number curve depicts that dispersing nanoparticles in base fluid deteriorate natural convection heat transfer which is in a good agreement with experimental works. |
topic |
nanofluid Natural convection variable property |
url |
http://jacm.scu.ac.ir/article_12714_55c5dafae1098d72acb22f407106098c.pdf |
work_keys_str_mv |
AT esmaeilghahremani effectofvariablethermalexpansioncoefficientandnanofluidpropertiesonsteadynaturalconvectioninanenclosure AT reihanehghaffari effectofvariablethermalexpansioncoefficientandnanofluidpropertiesonsteadynaturalconvectioninanenclosure AT hosseinghadjari effectofvariablethermalexpansioncoefficientandnanofluidpropertiesonsteadynaturalconvectioninanenclosure AT javadmokhtari effectofvariablethermalexpansioncoefficientandnanofluidpropertiesonsteadynaturalconvectioninanenclosure |
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