MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects
This paper is concerning with MHD stagnation-point flow problem of a viscous and incompressible fluid passing through a stretching/shrinking sheet with the effects of heat sink and radiation. A suitable similarity transformation is chosen to reduce the governing nonlinear partial differential equati...
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American Institute of Physics Inc.
2019
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my.utp.eprints.301452022-03-25T06:35:18Z MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects Nasir, N.A.A.M. Ishak, A. Pop, I. Zainuddin, N. This paper is concerning with MHD stagnation-point flow problem of a viscous and incompressible fluid passing through a stretching/shrinking sheet with the effects of heat sink and radiation. A suitable similarity transformation is chosen to reduce the governing nonlinear partial differential equations into the system of higher order nonlinear ordinary differential equations. The computed results are then being verified by comparing the current values with the existing results. The behaviors of the skin friction coefficient and heat transfer rate are plotted in the form of graph to facilitate analysis. From the analysis, it is found out that the velocity inside the boundary layer increases with the increase of magnetic strength as the boundary layer thickness decreases. The temperature decreases as the magnetic strength and heat sink increase. © 2019 Author(s). American Institute of Physics Inc. 2019 Conference or Workshop Item NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85076757459&doi=10.1063%2f1.5136436&partnerID=40&md5=f1727930e81efbd6c34859713d1cdc5f Nasir, N.A.A.M. and Ishak, A. and Pop, I. and Zainuddin, N. (2019) MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects. In: UNSPECIFIED. http://eprints.utp.edu.my/30145/ |
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This paper is concerning with MHD stagnation-point flow problem of a viscous and incompressible fluid passing through a stretching/shrinking sheet with the effects of heat sink and radiation. A suitable similarity transformation is chosen to reduce the governing nonlinear partial differential equations into the system of higher order nonlinear ordinary differential equations. The computed results are then being verified by comparing the current values with the existing results. The behaviors of the skin friction coefficient and heat transfer rate are plotted in the form of graph to facilitate analysis. From the analysis, it is found out that the velocity inside the boundary layer increases with the increase of magnetic strength as the boundary layer thickness decreases. The temperature decreases as the magnetic strength and heat sink increase. © 2019 Author(s). |
format |
Conference or Workshop Item |
author |
Nasir, N.A.A.M. Ishak, A. Pop, I. Zainuddin, N. |
spellingShingle |
Nasir, N.A.A.M. Ishak, A. Pop, I. Zainuddin, N. MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects |
author_facet |
Nasir, N.A.A.M. Ishak, A. Pop, I. Zainuddin, N. |
author_sort |
Nasir, N.A.A.M. |
title |
MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects |
title_short |
MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects |
title_full |
MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects |
title_fullStr |
MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects |
title_full_unstemmed |
MHD stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects |
title_sort |
mhd stagnation point flow over a permeable stretching/shrinking sheet with a heat sink and radiation effects |
publisher |
American Institute of Physics Inc. |
publishDate |
2019 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85076757459&doi=10.1063%2f1.5136436&partnerID=40&md5=f1727930e81efbd6c34859713d1cdc5f http://eprints.utp.edu.my/30145/ |
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13.211869 |