Title of article :
Linear Instability of Throughflow in a Rectangular Box Saturated by Nanofluid
Author/Authors :
Saini, S Department of Mathematics - National Institute of Technology Hamirpur, Hamirpur, India , Sharma, Y. D Department of Mathematics - National Institute of Technology Hamirpur, Hamirpur, India
Abstract :
An analysis is made for the effect of throughflow on the onset of convection in a rectangular box under the
assumption that total flux (sum of diffusive, thermophoretic, and convective) is zero on the boundaries. A linear
stability analysis and Galerkin weighted residual method are used to obtain the Rayleigh number and stability
curves for the onset of convection. Three dominating combination of parameters are extracted from the nondimensional
analysis. All rescaled parameters promote the convection. Aspect ratios, throughflow, and
nanoparticles play an important role in the formulation of cell distribution and development of convection.
Oscillatory convection is possible for permissible range of nanofluid parameters. It is also found that the size
of a cellular mode is altered by throughflow and nanoparticles.
Keywords :
Aspect ratio , Convective nanoparticle flux , Lateral walls , Rectangular box
Journal title :
Astroparticle Physics