Free convection boundary layer flow over a horizontal circular cylinder with newtonian heating

The numerical solution of steady free convection boundary layer flow over a horizontal circular cylinder, generated by Newtonian heating in which the heat transfer from the surface is proportional to the local surface temperature, is considered. The transformed boundary layer equations are solved nu...

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Main Authors: Mohd Zuki Salleh, Roslinda Nazar
Format: Article
Language:English
Published: Universiti Kebangsaan Malaysia 2010
Online Access:http://journalarticle.ukm.my/7388/
http://journalarticle.ukm.my/7388/
http://journalarticle.ukm.my/7388/1/01_Md_Yeaminhossain.pdf
id ukm-7388
recordtype eprints
spelling ukm-73882016-12-14T06:43:55Z http://journalarticle.ukm.my/7388/ Free convection boundary layer flow over a horizontal circular cylinder with newtonian heating Mohd Zuki Salleh, Roslinda Nazar, The numerical solution of steady free convection boundary layer flow over a horizontal circular cylinder, generated by Newtonian heating in which the heat transfer from the surface is proportional to the local surface temperature, is considered. The transformed boundary layer equations are solved numerically using an implicit finite-difference numerical scheme known as the Keller-box method. Numerical solutions are obtained for the skin friction coefficient, local heat transfer coefficient, wall temperature as well as the velocity and temperature profiles. The features of the flow and heat transfer characteristics for large range of values of the Prandtl number are analyzed and discussed. Universiti Kebangsaan Malaysia 2010-08 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/7388/1/01_Md_Yeaminhossain.pdf Mohd Zuki Salleh, and Roslinda Nazar, (2010) Free convection boundary layer flow over a horizontal circular cylinder with newtonian heating. Sains Malaysiana, 39 (4). pp. 671-676. ISSN 0126-6039 http://www.ukm.my/jsm/english_journals/vol39num4_2010/contentsVol39num4_2010.html
repository_type Digital Repository
institution_category Local University
institution Universiti Kebangasaan Malaysia
building UKM Institutional Repository
collection Online Access
language English
description The numerical solution of steady free convection boundary layer flow over a horizontal circular cylinder, generated by Newtonian heating in which the heat transfer from the surface is proportional to the local surface temperature, is considered. The transformed boundary layer equations are solved numerically using an implicit finite-difference numerical scheme known as the Keller-box method. Numerical solutions are obtained for the skin friction coefficient, local heat transfer coefficient, wall temperature as well as the velocity and temperature profiles. The features of the flow and heat transfer characteristics for large range of values of the Prandtl number are analyzed and discussed.
format Article
author Mohd Zuki Salleh,
Roslinda Nazar,
spellingShingle Mohd Zuki Salleh,
Roslinda Nazar,
Free convection boundary layer flow over a horizontal circular cylinder with newtonian heating
author_facet Mohd Zuki Salleh,
Roslinda Nazar,
author_sort Mohd Zuki Salleh,
title Free convection boundary layer flow over a horizontal circular cylinder with newtonian heating
title_short Free convection boundary layer flow over a horizontal circular cylinder with newtonian heating
title_full Free convection boundary layer flow over a horizontal circular cylinder with newtonian heating
title_fullStr Free convection boundary layer flow over a horizontal circular cylinder with newtonian heating
title_full_unstemmed Free convection boundary layer flow over a horizontal circular cylinder with newtonian heating
title_sort free convection boundary layer flow over a horizontal circular cylinder with newtonian heating
publisher Universiti Kebangsaan Malaysia
publishDate 2010
url http://journalarticle.ukm.my/7388/
http://journalarticle.ukm.my/7388/
http://journalarticle.ukm.my/7388/1/01_Md_Yeaminhossain.pdf
first_indexed 2023-09-18T19:49:34Z
last_indexed 2023-09-18T19:49:34Z
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