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Paper Information

Journal:   JOURNAL OF APPLIED FLUID MECHANICS (JAFM)   2016 , Volume 9 , Number 6; Page(s) 3073 To 3086.
 
Paper: 

EFFECT OF HORIZONTAL AC ELECTRIC FIELD ON THE STABILITY OF NATURAL CONVECTION IN A VERTICAL DIELECTRIC FLUID LAYER

 
 
Author(s):  SHANKAR B.M.*, KUMAR J., SHIVAKUMARA I.S., NAVEEN KUMAR S.B.
 
* DEPARTMENT OF MATHEMATICS, PES UNIVERSITY, BANGALORE 560 085, INDIA
 
Abstract: 

The stability of buoyancy-driven parallel shear flow of a dielectric fluid confined between differentially heated vertical plates is investigated under the influence of a uniform horizontal AC electric field. The resulting generalized eigenvalue problem is solved numerically using Chebyshev collocation method with wave speed as the eigenvalue. The critical Grash of number Gc, the critical wave number ?c and the critical wave speed cc are computed for wide ranges of AC electric Rayleigh number Rea and the Prandtl number Pr.
Based on these parameters, the stability characteristics of the system are discussed in detail. It is found that the AC electric Rayleigh number is to instill instability on convective flow against both stationary and travelling-wave mode disturbances. Nonetheless, the value of Prandtl number at which the transition from stationary to travelling-wave mode takes place is found to be independent of AC electric Rayleigh number.
The streamlines and isotherms presented demonstrate the development of complex dynamics at the critical state.

 
Keyword(s): NATURAL CONVECTION, AC ELECTRIC FIELD, VERTICAL FLUID LAYER, LINEAR STABILITY
 
References: 
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