The effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet
In this paper, the effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet is studied. The velocity, concentration and temperature of the sheet are assumed to vary linearly with x, where x is the distance along the sheet. The resulting non-similar boundary layer...
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my.utm.628792017-06-19T03:44:28Z http://eprints.utm.my/id/eprint/62879/ The effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet Rawi, Noraihan Afiqah Mohd. Kasim, Abdul Rahman Ali, Anati Isa, Mukheta Shafie, Sharidan Q Science In this paper, the effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet is studied. The velocity, concentration and temperature of the sheet are assumed to vary linearly with x, where x is the distance along the sheet. The resulting non-similar boundary layer equations are solved numerically using an implicit finite-difference scheme. Numerical results on the flow and heat and mass transfer characteristics are presented graphically for different values of amplitude, buoyancy ratio parameter and inclination angle. Results show that rate of heat and mass transfers increase but reduced skin friction decreases as the angle of inclination increases. It is noted that as buoyancy ratio parameter increases, rate of heat and mass transfer as well as reduced skin friction are decreases. 2013 Conference or Workshop Item PeerReviewed Rawi, Noraihan Afiqah and Mohd. Kasim, Abdul Rahman and Ali, Anati and Isa, Mukheta and Shafie, Sharidan (2013) The effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet. In: 21st National Symposium on Mathematical Sciences: Germination of Mathematical Sciences Education and Research Towards Global Sustainability, SKSM 21, 6-8 Nov, 2013, Penang, Malaysia. http://dx.doi.org/10.1063/1.4887621 |
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Q Science Rawi, Noraihan Afiqah Mohd. Kasim, Abdul Rahman Ali, Anati Isa, Mukheta Shafie, Sharidan The effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet |
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In this paper, the effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet is studied. The velocity, concentration and temperature of the sheet are assumed to vary linearly with x, where x is the distance along the sheet. The resulting non-similar boundary layer equations are solved numerically using an implicit finite-difference scheme. Numerical results on the flow and heat and mass transfer characteristics are presented graphically for different values of amplitude, buoyancy ratio parameter and inclination angle. Results show that rate of heat and mass transfers increase but reduced skin friction decreases as the angle of inclination increases. It is noted that as buoyancy ratio parameter increases, rate of heat and mass transfer as well as reduced skin friction are decreases. |
format |
Conference or Workshop Item |
author |
Rawi, Noraihan Afiqah Mohd. Kasim, Abdul Rahman Ali, Anati Isa, Mukheta Shafie, Sharidan |
author_facet |
Rawi, Noraihan Afiqah Mohd. Kasim, Abdul Rahman Ali, Anati Isa, Mukheta Shafie, Sharidan |
author_sort |
Rawi, Noraihan Afiqah |
title |
The effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet |
title_short |
The effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet |
title_full |
The effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet |
title_fullStr |
The effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet |
title_full_unstemmed |
The effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet |
title_sort |
effect of g-jitter on double diffusion by mixed convection past an inclined stretching sheet |
publishDate |
2013 |
url |
http://eprints.utm.my/id/eprint/62879/ http://dx.doi.org/10.1063/1.4887621 |
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1643655549583097856 |
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13.251813 |