Boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction
The steady laminar mixed convection boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretched vertical surface with prescribed skin friction were considered. The governing partial differential equations were transformed into a system of ordinary differentia...
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Beijing Keji Daxue
2011
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my.iium.irep.217972013-07-29T09:22:36Z http://irep.iium.edu.my/21797/ Boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction Ahmad, Kartini Nazar, Roslinda Pop, Loan TP Chemical technology The steady laminar mixed convection boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretched vertical surface with prescribed skin friction were considered. The governing partial differential equations were transformed into a system of ordinary differential equations, which were then solved numerically using the shooting method. Results for the stretching velocity, the local Nusselt number, the temperature, and the velocity profiles are presented for various values of the mixed convection parameter λ and material parameter K when the Prandtl number is equal to 1. Both assisting (heated plate) and opposing (cooled plate) flow regions are considered. It is found that dual solutions exist for both assisting and opposing flows. Beijing Keji Daxue 2011-08 Article REM application/pdf en http://irep.iium.edu.my/21797/1/Boundary_Layer_Flow.pdf Ahmad, Kartini and Nazar, Roslinda and Pop, Loan (2011) Boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction. International Journal of Mineral Metallurgy and Minerals, 18 (4). pp. 502-507. ISSN 1674-4799 10.1007/s12613-011-0469-y |
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TP Chemical technology Ahmad, Kartini Nazar, Roslinda Pop, Loan Boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction |
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The steady laminar mixed convection boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretched vertical surface with prescribed skin friction were considered. The governing partial differential equations were transformed into a system of ordinary differential equations, which were then solved numerically using the shooting method. Results for the stretching velocity, the local Nusselt number, the temperature, and the velocity profiles are presented for various values of the mixed convection parameter λ and material parameter K when the Prandtl number is equal to 1. Both assisting (heated plate) and opposing (cooled plate) flow regions are considered. It is found that dual solutions exist for both assisting and opposing flows. |
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Article |
author |
Ahmad, Kartini Nazar, Roslinda Pop, Loan |
author_facet |
Ahmad, Kartini Nazar, Roslinda Pop, Loan |
author_sort |
Ahmad, Kartini |
title |
Boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction |
title_short |
Boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction |
title_full |
Boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction |
title_fullStr |
Boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction |
title_full_unstemmed |
Boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction |
title_sort |
boundary layer flow and heat transfer of a micropolar fluid near the stagnation point on a stretching vertical surface with prescribed skin friction |
publisher |
Beijing Keji Daxue |
publishDate |
2011 |
url |
http://irep.iium.edu.my/21797/1/Boundary_Layer_Flow.pdf http://irep.iium.edu.my/21797/ |
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1643608271923183616 |
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13.211869 |