Natural Convective Coutte Flow in a Vertical Parallel Plate Microchannel
In the present paper, the exact analysis of steady state fully developed natural convective Couette flow in a vertical parallel plate microchannel is performed. Exact solutions are derived for the dimensionless velocity, temperature, volume flow rate, vertical heat flux and Nusselt number. The ef...
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my.utp.eprints.117892016-10-07T01:42:45Z Natural Convective Coutte Flow in a Vertical Parallel Plate Microchannel Marneni, Narahari Pendyala, Rajashekhar T Technology (General) In the present paper, the exact analysis of steady state fully developed natural convective Couette flow in a vertical parallel plate microchannel is performed. Exact solutions are derived for the dimensionless velocity, temperature, volume flow rate, vertical heat flux and Nusselt number. The effects of Grashof number, wall-ambient temperature difference ratio and Knudsen number on the velocity, volume flow rate and Nusselt number have been discussed through graphs. The study revealed that the fluid velocity and volume flow rate increases with increasing Grashof number whereas the Nusselt number decreases with increasing Grashof number. 2015 Citation Index Journal PeerReviewed application/pdf http://eprints.utp.edu.my/11789/1/Natural%20Convective%20Coutte%20Flow%20in%20a%20Vertical%20Parallel%20Plate%20Microchannel.pdf Marneni, Narahari and Pendyala, Rajashekhar (2015) Natural Convective Coutte Flow in a Vertical Parallel Plate Microchannel. [Citation Index Journal] http://eprints.utp.edu.my/11789/ |
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T Technology (General) Marneni, Narahari Pendyala, Rajashekhar Natural Convective Coutte Flow in a Vertical Parallel Plate Microchannel |
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In the present paper, the exact analysis of steady state fully developed natural convective
Couette flow in a vertical parallel plate microchannel is performed. Exact solutions are derived for the
dimensionless velocity, temperature, volume flow rate, vertical heat flux and Nusselt number. The
effects of Grashof number, wall-ambient temperature difference ratio and Knudsen number on the
velocity, volume flow rate and Nusselt number have been discussed through graphs. The study
revealed that the fluid velocity and volume flow rate increases with increasing Grashof number
whereas the Nusselt number decreases with increasing Grashof number. |
format |
Citation Index Journal |
author |
Marneni, Narahari Pendyala, Rajashekhar |
author_facet |
Marneni, Narahari Pendyala, Rajashekhar |
author_sort |
Marneni, Narahari |
title |
Natural Convective Coutte Flow in a Vertical Parallel Plate Microchannel |
title_short |
Natural Convective Coutte Flow in a Vertical Parallel Plate Microchannel |
title_full |
Natural Convective Coutte Flow in a Vertical Parallel Plate Microchannel |
title_fullStr |
Natural Convective Coutte Flow in a Vertical Parallel Plate Microchannel |
title_full_unstemmed |
Natural Convective Coutte Flow in a Vertical Parallel Plate Microchannel |
title_sort |
natural convective coutte flow in a vertical parallel plate microchannel |
publishDate |
2015 |
url |
http://eprints.utp.edu.my/11789/1/Natural%20Convective%20Coutte%20Flow%20in%20a%20Vertical%20Parallel%20Plate%20Microchannel.pdf http://eprints.utp.edu.my/11789/ |
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1738655979777556480 |
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13.251813 |