In this paper, the analysis of thermal instability of rotating nanofluid layer is revised with a physically more realistic boundary condition on the nanoparticle volumetric fraction i.e. the nanoparticle flux is assumed to be zero rather than prescribing the nanoparticle volumetric fraction on the rigid impermeable boundaries. This shows that the nanoparticle fraction value at the boundary adjusts accordingly. In this respect, the present model is more realistic physically than those of the previous investigations. The numerical computations are presented for water-based nanofluids with alumina and copper nanoparticles. For Alumina-water nanofluid, zero flux nanoparticle boundary condition has more destabilizing effect than the constant nan...
Thermal instability in a horizontal layer of Walter’s (Model B\u27) visco-elastic nanofluid is inves...
A modified model considering effects of density as well as conductivity of nanoparticles is used to ...
In this work, steady flow-field and heat transfer through a copper-water nanofluid around a rotating...
AbstractIn this paper, the analysis of thermal instability of rotating nanofluid layer is revised wi...
AbstractIn this paper, the analysis of thermal instability of rotating nanofluid layer is revised wi...
An analysis has been made in order to study the effects of the rotating flow over a shrinking permea...
In this paper, we use the Buongiorno’s mathematical model for studying numerically the convective in...
The present work aims at studying the thermal instability in a rotating anisotropic porous layer sat...
In the present framework, the simultaneous effect of rotation, magnetic field, heat source and local...
In this paper, we study the effect of rotation on the thermal instability in a horizontal layer of a...
In this paper, we study the effect of rotation on the thermal instability in a horizontal layer of a...
In this paper, we study the effect of rotation on the thermal instability in a horizontal layer of a...
The rotating flow over a shrinking sheet in nanofluid using Buongiorno model and thermophysical prop...
Abstract In this article, the three-dimensional (3D) flow and heat transport of viscous dissipating ...
An analysis of the rotating nanofluid flow past an exponentially stretched surface with the presence...
Thermal instability in a horizontal layer of Walter’s (Model B\u27) visco-elastic nanofluid is inves...
A modified model considering effects of density as well as conductivity of nanoparticles is used to ...
In this work, steady flow-field and heat transfer through a copper-water nanofluid around a rotating...
AbstractIn this paper, the analysis of thermal instability of rotating nanofluid layer is revised wi...
AbstractIn this paper, the analysis of thermal instability of rotating nanofluid layer is revised wi...
An analysis has been made in order to study the effects of the rotating flow over a shrinking permea...
In this paper, we use the Buongiorno’s mathematical model for studying numerically the convective in...
The present work aims at studying the thermal instability in a rotating anisotropic porous layer sat...
In the present framework, the simultaneous effect of rotation, magnetic field, heat source and local...
In this paper, we study the effect of rotation on the thermal instability in a horizontal layer of a...
In this paper, we study the effect of rotation on the thermal instability in a horizontal layer of a...
In this paper, we study the effect of rotation on the thermal instability in a horizontal layer of a...
The rotating flow over a shrinking sheet in nanofluid using Buongiorno model and thermophysical prop...
Abstract In this article, the three-dimensional (3D) flow and heat transport of viscous dissipating ...
An analysis of the rotating nanofluid flow past an exponentially stretched surface with the presence...
Thermal instability in a horizontal layer of Walter’s (Model B\u27) visco-elastic nanofluid is inves...
A modified model considering effects of density as well as conductivity of nanoparticles is used to ...
In this work, steady flow-field and heat transfer through a copper-water nanofluid around a rotating...