G-jitter free convection flow near a three-dimensional stagnation-point region with internal heat generation

A numerical study on unsteady free convection viscous fluid flow on a three-dimensional stagnation point region was studied. On the flow, g-jitter effect occurs under microgravity environment and exothermic reaction causing the heat generation effect. A system of nonlinear parabolic partial differen...

Full description

Bibliographic Details
Main Authors: Hamdan, F. R., Kamal, M. H. A., Rawi, N. A., Mohamad, A. Q., Ali, A., Ilias, M. R., Shafie, S.
Format: Article
Published: Penerbit Akademia Baru 2020
Subjects:
_version_ 1796864255019974656
author Hamdan, F. R.
Kamal, M. H. A.
Rawi, N. A.
Mohamad, A. Q.
Ali, A.
Ilias, M. R.
Shafie, S.
author_facet Hamdan, F. R.
Kamal, M. H. A.
Rawi, N. A.
Mohamad, A. Q.
Ali, A.
Ilias, M. R.
Shafie, S.
author_sort Hamdan, F. R.
collection ePrints
description A numerical study on unsteady free convection viscous fluid flow on a three-dimensional stagnation point region was studied. On the flow, g-jitter effect occurs under microgravity environment and exothermic reaction causing the heat generation effect. A system of nonlinear parabolic partial differential equations was modified and introduced in this study as an extension from previous study. After semi-similar transformation technique, an implicit finite difference scheme known as the Keller-box method was imposed on the dimensionless governing equation. The analysis on profiles and physical quantities of principal interest was conducted based on the parameters considered in this flow; curvature ratio C, oscillation frequency Ω, amplitude of modulation ε, and heat generation Q. Analysis on velocity profiles shows the behavior for natural convection flow thus satisfies the boundary condition. On the other hand, different value of C produced a different special stagnation-point flow due to the different geometrical shape implies. In addition, g-Jitter effect produced a fluctuating behavior on the flow and heat transfer with larger values of Ω increased the convergence rate. From the temperature results, the temperature profile was found increased but the heat flux on the wall values decreased as Q increased. A comparison study on published result with present study shows the result on skin friction coefficient and heat flux on the wall corresponds to a very good agreement.
first_indexed 2024-03-05T20:39:07Z
format Article
id utm.eprints-86496
institution Universiti Teknologi Malaysia - ePrints
last_indexed 2024-03-05T20:39:07Z
publishDate 2020
publisher Penerbit Akademia Baru
record_format dspace
spelling utm.eprints-864962020-09-30T08:41:09Z http://eprints.utm.my/86496/ G-jitter free convection flow near a three-dimensional stagnation-point region with internal heat generation Hamdan, F. R. Kamal, M. H. A. Rawi, N. A. Mohamad, A. Q. Ali, A. Ilias, M. R. Shafie, S. QA Mathematics A numerical study on unsteady free convection viscous fluid flow on a three-dimensional stagnation point region was studied. On the flow, g-jitter effect occurs under microgravity environment and exothermic reaction causing the heat generation effect. A system of nonlinear parabolic partial differential equations was modified and introduced in this study as an extension from previous study. After semi-similar transformation technique, an implicit finite difference scheme known as the Keller-box method was imposed on the dimensionless governing equation. The analysis on profiles and physical quantities of principal interest was conducted based on the parameters considered in this flow; curvature ratio C, oscillation frequency Ω, amplitude of modulation ε, and heat generation Q. Analysis on velocity profiles shows the behavior for natural convection flow thus satisfies the boundary condition. On the other hand, different value of C produced a different special stagnation-point flow due to the different geometrical shape implies. In addition, g-Jitter effect produced a fluctuating behavior on the flow and heat transfer with larger values of Ω increased the convergence rate. From the temperature results, the temperature profile was found increased but the heat flux on the wall values decreased as Q increased. A comparison study on published result with present study shows the result on skin friction coefficient and heat flux on the wall corresponds to a very good agreement. Penerbit Akademia Baru 2020-03 Article PeerReviewed Hamdan, F. R. and Kamal, M. H. A. and Rawi, N. A. and Mohamad, A. Q. and Ali, A. and Ilias, M. R. and Shafie, S. (2020) G-jitter free convection flow near a three-dimensional stagnation-point region with internal heat generation. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 67 (1). pp. 119-135. ISSN 2289-7879
spellingShingle QA Mathematics
Hamdan, F. R.
Kamal, M. H. A.
Rawi, N. A.
Mohamad, A. Q.
Ali, A.
Ilias, M. R.
Shafie, S.
G-jitter free convection flow near a three-dimensional stagnation-point region with internal heat generation
title G-jitter free convection flow near a three-dimensional stagnation-point region with internal heat generation
title_full G-jitter free convection flow near a three-dimensional stagnation-point region with internal heat generation
title_fullStr G-jitter free convection flow near a three-dimensional stagnation-point region with internal heat generation
title_full_unstemmed G-jitter free convection flow near a three-dimensional stagnation-point region with internal heat generation
title_short G-jitter free convection flow near a three-dimensional stagnation-point region with internal heat generation
title_sort g jitter free convection flow near a three dimensional stagnation point region with internal heat generation
topic QA Mathematics
work_keys_str_mv AT hamdanfr gjitterfreeconvectionflownearathreedimensionalstagnationpointregionwithinternalheatgeneration
AT kamalmha gjitterfreeconvectionflownearathreedimensionalstagnationpointregionwithinternalheatgeneration
AT rawina gjitterfreeconvectionflownearathreedimensionalstagnationpointregionwithinternalheatgeneration
AT mohamadaq gjitterfreeconvectionflownearathreedimensionalstagnationpointregionwithinternalheatgeneration
AT alia gjitterfreeconvectionflownearathreedimensionalstagnationpointregionwithinternalheatgeneration
AT iliasmr gjitterfreeconvectionflownearathreedimensionalstagnationpointregionwithinternalheatgeneration
AT shafies gjitterfreeconvectionflownearathreedimensionalstagnationpointregionwithinternalheatgeneration