Oscillatory Flow in a Vertical Channel Filled with Porous Medium with Radiation and Dissipation

The present discussion is an analytical study of the oscillatory flow of a viscous incompressible Newtonian fluid in an infinite vertical parallel plate channel filled with porous medium. It is assumed that the flow is fully developed and the fluid is dissipative, gray, absorbing-emitting radiation...

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Main Authors: Paresh VYAS, Nupur SRIVASTAVA
Format: Article
Language:English
Published: Walailak University 2013-07-01
Series:Walailak Journal of Science and Technology
Subjects:
Online Access:http://wjst.wu.ac.th/index.php/wjst/article/view/413
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spelling doaj-202babdf4c284510b339e4fa5509cb572020-11-25T02:17:48ZengWalailak UniversityWalailak Journal of Science and Technology1686-39332228-835X2013-07-0110510.2004/wjst.v10i5.413Oscillatory Flow in a Vertical Channel Filled with Porous Medium with Radiation and DissipationParesh VYAS0Nupur SRIVASTAVA1Department of Mathematics, University of Rajasthan, Jaipur 302004Department of Mathematics, Swami Keshvanand Institute of Technology Management and Gramothan, Jaipur 302025The present discussion is an analytical study of the oscillatory flow of a viscous incompressible Newtonian fluid in an infinite vertical parallel plate channel filled with porous medium. It is assumed that the flow is fully developed and the fluid is dissipative, gray, absorbing-emitting radiation and non-scattering. The radiative heat flux in the energy equation follows Rosseland approximation. It is considered that both the plates are stationary and temperature of one of the plates oscillates about a non-zero mean temperature. Approximate solutions to the coupled non-linear partial differential equations governing the flow have been found using the double perturbation technique. The effects of various parameters on the transient velocity, the transient temperature, the amplitude and phase of the skin friction and the rate of heat transfer have been analysed and shown in the form of graphs and tables.http://wjst.wu.ac.th/index.php/wjst/article/view/413Unsteadyradiationdissipationvertical channelporous mediumoscillatory temperature
collection DOAJ
language English
format Article
sources DOAJ
author Paresh VYAS
Nupur SRIVASTAVA
spellingShingle Paresh VYAS
Nupur SRIVASTAVA
Oscillatory Flow in a Vertical Channel Filled with Porous Medium with Radiation and Dissipation
Walailak Journal of Science and Technology
Unsteady
radiation
dissipation
vertical channel
porous medium
oscillatory temperature
author_facet Paresh VYAS
Nupur SRIVASTAVA
author_sort Paresh VYAS
title Oscillatory Flow in a Vertical Channel Filled with Porous Medium with Radiation and Dissipation
title_short Oscillatory Flow in a Vertical Channel Filled with Porous Medium with Radiation and Dissipation
title_full Oscillatory Flow in a Vertical Channel Filled with Porous Medium with Radiation and Dissipation
title_fullStr Oscillatory Flow in a Vertical Channel Filled with Porous Medium with Radiation and Dissipation
title_full_unstemmed Oscillatory Flow in a Vertical Channel Filled with Porous Medium with Radiation and Dissipation
title_sort oscillatory flow in a vertical channel filled with porous medium with radiation and dissipation
publisher Walailak University
series Walailak Journal of Science and Technology
issn 1686-3933
2228-835X
publishDate 2013-07-01
description The present discussion is an analytical study of the oscillatory flow of a viscous incompressible Newtonian fluid in an infinite vertical parallel plate channel filled with porous medium. It is assumed that the flow is fully developed and the fluid is dissipative, gray, absorbing-emitting radiation and non-scattering. The radiative heat flux in the energy equation follows Rosseland approximation. It is considered that both the plates are stationary and temperature of one of the plates oscillates about a non-zero mean temperature. Approximate solutions to the coupled non-linear partial differential equations governing the flow have been found using the double perturbation technique. The effects of various parameters on the transient velocity, the transient temperature, the amplitude and phase of the skin friction and the rate of heat transfer have been analysed and shown in the form of graphs and tables.
topic Unsteady
radiation
dissipation
vertical channel
porous medium
oscillatory temperature
url http://wjst.wu.ac.th/index.php/wjst/article/view/413
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AT nupursrivastava oscillatoryflowinaverticalchannelfilledwithporousmediumwithradiationanddissipation
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