Non-Isothermal Effect on the Motion of a Particulate Flow between Two Parallel Plates

The non-isothermal flow of dusty, viscous, incompressible conducting fluid between two oscillatory parallel plates is studied. This flow is described by the continuity, momentum and the energy equation, which accounts for the heat and mass transfer. Closed-form solutions method initiated by the boun...

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Autores principales: Ajadi, S. O., Odejide, S. A., Fareo, A. G.
Formato: Artículo
Lenguaje:inglés
Publicado: 2014
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Acceso en línea:http://localhost:8080/xmlui/handle/123456789/3497
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author Ajadi, S. O.
Odejide, S. A.
Fareo, A. G.
author_facet Ajadi, S. O.
Odejide, S. A.
Fareo, A. G.
author_sort Ajadi, S. O.
collection DSpace
description The non-isothermal flow of dusty, viscous, incompressible conducting fluid between two oscillatory parallel plates is studied. This flow is described by the continuity, momentum and the energy equation, which accounts for the heat and mass transfer. Closed-form solutions method initiated by the boundary conditions were obtained for zero and non-zero pressure gradient. These solutions show that the non-isothermal nature of the flow has led to a dramatic departure from the isothermal case. The solutions were further demonstrated graphically to elucidate the significance of parameters such as Prandtl number (Pr), the magnetic parameter (Bo) and the Grashoff number (Gr) on the velocity profiles.
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spelling oai:ir.oauife.edu.ng:123456789-34972023-05-13T11:10:59Z Non-Isothermal Effect on the Motion of a Particulate Flow between Two Parallel Plates Ajadi, S. O. Odejide, S. A. Fareo, A. G. Incompressible fluid Non-isothermal Heat transfer Mass transfer Particulate flow The non-isothermal flow of dusty, viscous, incompressible conducting fluid between two oscillatory parallel plates is studied. This flow is described by the continuity, momentum and the energy equation, which accounts for the heat and mass transfer. Closed-form solutions method initiated by the boundary conditions were obtained for zero and non-zero pressure gradient. These solutions show that the non-isothermal nature of the flow has led to a dramatic departure from the isothermal case. The solutions were further demonstrated graphically to elucidate the significance of parameters such as Prandtl number (Pr), the magnetic parameter (Bo) and the Grashoff number (Gr) on the velocity profiles. 2014-09-01T11:07:01Z 2018-10-29T11:15:16Z 2014-09-01T11:07:01Z 2018-10-29T11:15:16Z 2009 Article Ajadi, S. O.; Odejide, S. A. and Fareo, A. G. (2009). Non-Isothermal Effect on the Motion of a Particulate Flow between Two Parallel Plates. International Journal of Pure and Applied Mathematics, 54(2). http://localhost:8080/xmlui/handle/123456789/3497 en PDF application/pdf
spellingShingle Incompressible fluid
Non-isothermal
Heat transfer
Mass transfer
Particulate flow
Ajadi, S. O.
Odejide, S. A.
Fareo, A. G.
Non-Isothermal Effect on the Motion of a Particulate Flow between Two Parallel Plates
title Non-Isothermal Effect on the Motion of a Particulate Flow between Two Parallel Plates
title_full Non-Isothermal Effect on the Motion of a Particulate Flow between Two Parallel Plates
title_fullStr Non-Isothermal Effect on the Motion of a Particulate Flow between Two Parallel Plates
title_full_unstemmed Non-Isothermal Effect on the Motion of a Particulate Flow between Two Parallel Plates
title_short Non-Isothermal Effect on the Motion of a Particulate Flow between Two Parallel Plates
title_sort non isothermal effect on the motion of a particulate flow between two parallel plates
topic Incompressible fluid
Non-isothermal
Heat transfer
Mass transfer
Particulate flow
url http://localhost:8080/xmlui/handle/123456789/3497
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AT odejidesa nonisothermaleffectonthemotionofaparticulateflowbetweentwoparallelplates
AT fareoag nonisothermaleffectonthemotionofaparticulateflowbetweentwoparallelplates