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Electrohydrodynamic Instability of an Elastico-Viscous Dielectric Fluid Layer under Rotation


Affiliations
1 Department of Mathematics, Sidharth Govt. College, Nadaun-177 005, Himachal Pradesh, India
2 Department of Mathematics, Apex Professional University, Pasighat, Arunachal Pradesh, India
3 Department of Mathematics, NSCBM Govt. P. G. College Hamirpur, Himachal Pradesh, India
     

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In this paper, the combined effect of uniform rotation and AC electric field on the onset of instability in a horizontal layer of an elastico-viscous dielectric fluid layer is examined both analytically and graphically. Rivlin-Ericksen fluid model is used to describe rheological behaviour of an elastico-viscous fluid. The stability criteria for stationary and oscillatory convection are derived for the case of free-free boundaries. It is observed that Rivlin-Ericksen fluid behaves like an ordinary Newtonian fluid in the case of stationary convection and rotation has stabilizing effect whereas AC electric field has destabilizing influence on the stability of the system. The necessary condition for the existence of oscillatory convection is also obtained. The effect of rotation and AC electric field has also been shown graphically. The present results are in agreement with the earlier published results.

Keywords

Rivlin-Ericksen Fluid, Rotation, AC Electric Field, Electrohydrodynamic, Viscosity, Viscoelasticity.
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  • Electrohydrodynamic Instability of an Elastico-Viscous Dielectric Fluid Layer under Rotation

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Authors

G. C. Rana
Department of Mathematics, Sidharth Govt. College, Nadaun-177 005, Himachal Pradesh, India
H. S. Jamwal
Department of Mathematics, Apex Professional University, Pasighat, Arunachal Pradesh, India
Kalpna Chadha
Department of Mathematics, NSCBM Govt. P. G. College Hamirpur, Himachal Pradesh, India

Abstract


In this paper, the combined effect of uniform rotation and AC electric field on the onset of instability in a horizontal layer of an elastico-viscous dielectric fluid layer is examined both analytically and graphically. Rivlin-Ericksen fluid model is used to describe rheological behaviour of an elastico-viscous fluid. The stability criteria for stationary and oscillatory convection are derived for the case of free-free boundaries. It is observed that Rivlin-Ericksen fluid behaves like an ordinary Newtonian fluid in the case of stationary convection and rotation has stabilizing effect whereas AC electric field has destabilizing influence on the stability of the system. The necessary condition for the existence of oscillatory convection is also obtained. The effect of rotation and AC electric field has also been shown graphically. The present results are in agreement with the earlier published results.

Keywords


Rivlin-Ericksen Fluid, Rotation, AC Electric Field, Electrohydrodynamic, Viscosity, Viscoelasticity.