Title of article :
Onset of Convection in a Nanofluid Layer Confined within a Hele-Shaw Cell
Author/Authors :
Yadav, D School of Mechanical Engineering - Yonsei University, Seoul, South Korea , Lee, J School of Mechanical Engineering - Yonsei University, Seoul, South Korea
Abstract :
In this study, the onset of nanofluid convection confined within a Hele-Shaw cell is investigated by
performing a classical linear stability analysis. The model used for nanofluid combines the effects of
Brownian motion and thermophoresis, while for Hele-Shaw cell Brinkman model are employed. The new
stability equations are formulated by introducing new characteristic dimensionless parameters such as the
Hele-Shaw number, the Hele-Shaw Rayleigh number and the nanoparticle concentration Hele-Shaw Rayleigh
number. The resulting stability equations are solved numerically by using higher order Galerkin method. It is
found that the nanoparticle concentration Hele-Shaw Rayleigh number, the Lewis number and the modified
diffusivity ratio hasten the onset of convection, while the Hele-Shaw number delays the onset of convection.
A comparison is also made between the existing boundary conditions for nanoparticle and obtained that the
zero nanoparticle flux boundary conditions under the thermophoretic effects has more destabilizing effect
than the fixed nanoparticle boundary conditions.
Keywords :
Nanofluid convection , Brownian motion , Hele-Shaw cell , Thermophoresis
Journal title :
Astroparticle Physics