Flow and heat transfer characteristics on a moving plate in a nanofluid
This paper considers the extended Blasius and Sakiadis problems in nanofluids, by considering a uniform free stream parallel to a fixed or moving flat plate, which has more practical significance. It is assumed that the plate moves in the same or opposite direction to the free stream. The resulting...
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2012
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my.upm.eprints.253002019-11-01T02:03:06Z http://psasir.upm.edu.my/id/eprint/25300/ Flow and heat transfer characteristics on a moving plate in a nanofluid Bachok @ Lati, Norfifah Mohd Ishak, Anuar Pop, Ioan This paper considers the extended Blasius and Sakiadis problems in nanofluids, by considering a uniform free stream parallel to a fixed or moving flat plate, which has more practical significance. It is assumed that the plate moves in the same or opposite direction to the free stream. The resulting system of nonlinear ordinary differential equations is solved numerically for three types of nanoparticles, namely copper (Cu), alumina (Al2O3), and titania (TiO2) in the water based fluid with Prandtl number Pr = 6.2. The effect of the solid volume fraction parameter φ of the nanofluids on the heat transfer characteristics is investigated. The results indicate that dual solutions exist when the plate and the free stream move in the opposite directions. Elsevier 2012-01-31 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/25300/1/Flow%20and%20heat%20transfer%20characteristics%20on%20a%20moving%20plate%20in%20a%20nanofluid.pdf Bachok @ Lati, Norfifah and Mohd Ishak, Anuar and Pop, Ioan (2012) Flow and heat transfer characteristics on a moving plate in a nanofluid. International Journal of Heat and Mass Transfer, 55 (4). pp. 642-648. ISSN 0017-9310; ESSN: 1879-2189 https://www.sciencedirect.com/science/article/pii/S0017931011006272?via%3Dihub 10.1016/j.ijheatmasstransfer.2011.10.047 |
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This paper considers the extended Blasius and Sakiadis problems in nanofluids, by considering a uniform free stream parallel to a fixed or moving flat plate, which has more practical significance. It is assumed that the plate moves in the same or opposite direction to the free stream. The resulting system of nonlinear ordinary differential equations is solved numerically for three types of nanoparticles, namely copper (Cu), alumina (Al2O3), and titania (TiO2) in the water based fluid with Prandtl number Pr = 6.2. The effect of the solid volume fraction parameter φ of the nanofluids on the heat transfer characteristics is investigated. The results indicate that dual solutions exist when the plate and the free stream move in the opposite directions. |
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Article |
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Bachok @ Lati, Norfifah Mohd Ishak, Anuar Pop, Ioan |
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Bachok @ Lati, Norfifah Mohd Ishak, Anuar Pop, Ioan Flow and heat transfer characteristics on a moving plate in a nanofluid |
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Bachok @ Lati, Norfifah Mohd Ishak, Anuar Pop, Ioan |
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Bachok @ Lati, Norfifah |
title |
Flow and heat transfer characteristics on a moving plate in a nanofluid |
title_short |
Flow and heat transfer characteristics on a moving plate in a nanofluid |
title_full |
Flow and heat transfer characteristics on a moving plate in a nanofluid |
title_fullStr |
Flow and heat transfer characteristics on a moving plate in a nanofluid |
title_full_unstemmed |
Flow and heat transfer characteristics on a moving plate in a nanofluid |
title_sort |
flow and heat transfer characteristics on a moving plate in a nanofluid |
publisher |
Elsevier |
publishDate |
2012 |
url |
http://psasir.upm.edu.my/id/eprint/25300/1/Flow%20and%20heat%20transfer%20characteristics%20on%20a%20moving%20plate%20in%20a%20nanofluid.pdf http://psasir.upm.edu.my/id/eprint/25300/ https://www.sciencedirect.com/science/article/pii/S0017931011006272?via%3Dihub |
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