Rayleigh–Bénard Instability of an Ellis Fluid Saturated Porous Channel with an Isoflux Boundary

Author:

Brandão Pedro VayssièreORCID,Celli MicheleORCID,Barletta AntonioORCID

Abstract

The onset of the thermal instability is investigated in a porous channel with plane parallel boundaries saturated by a non–Newtonian shear–thinning fluid and subject to a horizontal throughflow. The Ellis model is adopted to describe the fluid rheology. Both horizontal boundaries are assumed to be impermeable. A uniform heat flux is supplied through the lower boundary, while the upper boundary is kept at a uniform temperature. Such an asymmetric setup of the thermal boundary conditions is analysed via a numerical solution of the linear stability eigenvalue problem. The linear stability analysis is developed for three–dimensional normal modes of perturbation showing that the transverse modes are the most unstable. The destabilising effect of the non–Newtonian shear–thinning character of the fluid is also demonstrated as compared to the behaviour displayed, for the same flow configuration, by a Newtonian fluid.

Funder

Ministry of Education, Universities and Research

Coordenação de Aperfeicoamento de Pessoal de Nível Superior

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics

Reference18 articles.

1. Convection in Porous Media;Nield,2017

2. Stability and Wave Motion in Porous Media;Straughan,2008

3. Routes to Absolute Instability in Porous Media;Barletta,2019

4. Thermal instability of viscoelastic fluids in porous media

5. Three-dimensional absolute and convective instabilities in mixed convection of a viscoelastic fluid through a porous medium

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