Effects of Through-Flow and Internal Heat Generation on a Thermo Convective Instability in an Anisotropic Porous Medium
A linear stability analysis is performed to study the effects of through-flow and internal heat generation on the preferred mode of stationary thermal convection in a variable viscosity liquid saturating an anisotropic porous medium. The Rayleigh-Ritz technique is used to obtain the eigenvalue of th...
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Isfahan University of Technology
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doaj-a352d53ab5784e2a8e75cb1f8b3d00562020-11-25T01:46:26ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722014-01-0174581590.Effects of Through-Flow and Internal Heat Generation on a Thermo Convective Instability in an Anisotropic Porous MediumR. K. VANISHREE0Maharani’s Science college for WomenA linear stability analysis is performed to study the effects of through-flow and internal heat generation on the preferred mode of stationary thermal convection in a variable viscosity liquid saturating an anisotropic porous medium. The Rayleigh-Ritz technique is used to obtain the eigenvalue of the problem. The influence of porous parameter, mechanical anisotropy parameter, Peclet number, thermal anisotropy parameter, Brinkman number and variable viscosity parameter on the stability of the system is analyzed. The problem suggests another method of controlling convection by externally controlling porous media damping and shear. This is in addition to the through-flow mechanism of regulating convection.http://jafmonline.net/JournalArchive/download?file_ID=35282&issue_ID=219Anisotropy Through-flow Porous medium Thermal convection Internal heat generation. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
R. K. VANISHREE |
spellingShingle |
R. K. VANISHREE Effects of Through-Flow and Internal Heat Generation on a Thermo Convective Instability in an Anisotropic Porous Medium Journal of Applied Fluid Mechanics Anisotropy Through-flow Porous medium Thermal convection Internal heat generation. |
author_facet |
R. K. VANISHREE |
author_sort |
R. K. VANISHREE |
title |
Effects of Through-Flow and Internal Heat Generation on a Thermo Convective Instability in an Anisotropic Porous Medium |
title_short |
Effects of Through-Flow and Internal Heat Generation on a Thermo Convective Instability in an Anisotropic Porous Medium |
title_full |
Effects of Through-Flow and Internal Heat Generation on a Thermo Convective Instability in an Anisotropic Porous Medium |
title_fullStr |
Effects of Through-Flow and Internal Heat Generation on a Thermo Convective Instability in an Anisotropic Porous Medium |
title_full_unstemmed |
Effects of Through-Flow and Internal Heat Generation on a Thermo Convective Instability in an Anisotropic Porous Medium |
title_sort |
effects of through-flow and internal heat generation on a thermo convective instability in an anisotropic porous medium |
publisher |
Isfahan University of Technology |
series |
Journal of Applied Fluid Mechanics |
issn |
1735-3572 |
publishDate |
2014-01-01 |
description |
A linear stability analysis is performed to study the effects of through-flow and internal heat generation on the preferred mode of stationary thermal convection in a variable viscosity liquid saturating an anisotropic porous medium. The Rayleigh-Ritz technique is used to obtain the eigenvalue of the problem. The influence of porous parameter, mechanical anisotropy parameter, Peclet number, thermal anisotropy parameter, Brinkman number and variable viscosity parameter on the stability of the system is analyzed. The problem suggests another method of controlling convection by externally controlling porous media damping and shear. This is in addition to the through-flow mechanism of regulating convection. |
topic |
Anisotropy Through-flow Porous medium Thermal convection Internal heat generation. |
url |
http://jafmonline.net/JournalArchive/download?file_ID=35282&issue_ID=219 |
work_keys_str_mv |
AT rkvanishree effectsofthroughflowandinternalheatgenerationonathermoconvectiveinstabilityinananisotropicporousmedium |
_version_ |
1725019621220679680 |