Thermosolutal LTNE Porous Mixed Convection Under the Influence of the Soret Effect

Author:

Hemanth Kumar C.1,Shankar B. M.2,Shivakumara I. S.3

Affiliation:

1. Department of Mathematics, BMS College of Engineering, Bengaluru 560 019, India

2. Department of Mathematics, PES University, Bengaluru 560 085, India

3. Department of Mathematics, Bangalore University, Bengaluru 560 056, India

Abstract

Abstract The onset of thermosolutal convection in a fluid-saturated porous medium in the presence of a horizontal pressure gradient and the Soret effect under the two-temperature model of local thermal nonequilibrium (LTNE) is investigated. The Darcy model with the time-dependent velocity term in the momentum equation is employed together with the Oberbeck–Boussinesq approximation. The eighth-order eigenvalue differential equation obtained by employing linear stability analysis is solved using Galerkin's method of weighted residuals (GMWR) and also analytically. The onset of convection instills through oscillatory rather than stationary mode, and the critical stability parameters for the same are determined. The horizontal pressure gradient reinforces together with the solute concentration gradient and the scaled interphase heat transfer coefficient in evidencing mixed behavior on the criterion for the onset of oscillatory convection. Besides, the similarities and differences between the results of thermal and thermosolutal LTNE porous mixed convection are discerned.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference38 articles.

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3. Binary Fluid Convection and Double-Diffusive Convection in a Porous Medium;ASME J. Heat Transfer-Trans. ASME,1986

4. Mass and Heat Transfer by Natural Convection in a Vertical Slot Filled With Porous Medium;Int. J. Heat Mass Transfer,1986

5. Analytical and Numerical Study of Double Diffusive Convection in a Vertical Enclosure;Heat Mass Transfer,1996

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