Engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate
This article deals with the time dependent analysis of thermally conducting and Magneto-hydrodynamic (MHD) liquid film flow of a fourth order fluid past a vertical and vibratory plate. In this article have been developed for higher order complex nature fluids. The governing-equations have been model...
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my-unisza-ir.15692020-11-18T03:32:43Z http://eprints.unisza.edu.my/1569/ Engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate Mustafa, Mamat Mohd, M.I Shah, Q. TA Engineering (General). Civil engineering (General) This article deals with the time dependent analysis of thermally conducting and Magneto-hydrodynamic (MHD) liquid film flow of a fourth order fluid past a vertical and vibratory plate. In this article have been developed for higher order complex nature fluids. The governing-equations have been modeled in the terms of nonlinear partial differential equations with the help of physical boundary circumstances. Two different analytical approaches i.e. Adomian decomposition method (ADM) and the optimal homotopy asymptotic method (OHAM), have been used for discoveryof the series clarification of the problems. Solutions obtained via two diversemethods have been compared using the graphs, tables and found an excellent contract. Variants of the embedded flow parameters in the solution have been analysed through the graphical diagrams. 2017 Conference or Workshop Item NonPeerReviewed image en http://eprints.unisza.edu.my/1569/1/FH03-FIK-17-09551.jpg Mustafa, Mamat and Mohd, M.I and Shah, Q. (2017) Engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate. In: International Conference on Functional Materials, Characterization, Solid State Physics, Power, Thermal and Combustion Energy 2017, 7-8 April 2017, Andhra Pradesh; India. |
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TA Engineering (General). Civil engineering (General) Mustafa, Mamat Mohd, M.I Shah, Q. Engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate |
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This article deals with the time dependent analysis of thermally conducting and Magneto-hydrodynamic (MHD) liquid film flow of a fourth order fluid past a vertical and vibratory plate. In this article have been developed for higher order complex nature fluids. The governing-equations have been modeled in the terms of nonlinear partial differential equations with the help of physical boundary circumstances. Two different analytical approaches i.e. Adomian decomposition method (ADM) and the optimal homotopy asymptotic method (OHAM), have been used for discoveryof the series clarification of the problems. Solutions obtained via two diversemethods have been compared using the graphs, tables and found an excellent contract. Variants of the embedded flow parameters in the solution have been analysed through the graphical diagrams. |
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Conference or Workshop Item |
author |
Mustafa, Mamat Mohd, M.I Shah, Q. |
author_facet |
Mustafa, Mamat Mohd, M.I Shah, Q. |
author_sort |
Mustafa, Mamat |
title |
Engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate |
title_short |
Engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate |
title_full |
Engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate |
title_fullStr |
Engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate |
title_full_unstemmed |
Engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate |
title_sort |
engineering applications and analysis of vibratory motion fourth order fluid film over the time dependent heated flat plate |
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2017 |
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http://eprints.unisza.edu.my/1569/1/FH03-FIK-17-09551.jpg http://eprints.unisza.edu.my/1569/ |
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13.211869 |