We investigate in this paper the simultaneous effects of electric field, couple stress, porous parameter and slip at the permeable surface on the generalized dispersion of an unsteady convective diffusion in a poorly conducting fluid in a channel bounded by porous layers. A two dimensional flow has been considered and the resulting partial differential equations have been solved analytically. The solutions are computed and the results show that the solute is dispersed relative to a plane moving with the mean speed of couple stress poorly conducting fluid with a relative unsteady dispersion coefficient. These relative unsteady dispersion coefficients are numerically computed and found that they increase with the increase in porous parameter and decrease with an increase in couple stress parameters. We have also estimated the contribution of diffusion and pure convection on the generalized dispersion coefficient. The effect of pure convection, neglecting diffusion terms on mean concentration is computed and the results show that the effect of pure convection decreases mean concentration compared to combined effect of convection and diffusion.
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1 December 2011
Research Article|
December 01 2011
Generalized dispersion of unsteady convective diffusion in couple stress poorly conducting fluid bounded by porous layer in the presence of an electric field
K. Mallika;
K. Mallika
1
Department of Mathematics, Global Academy of Technology, Rajarajeshwarinagar Bangalore 560 098
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N. Rudraiah
N. Rudraiah
2
UGC-CAS in Fluid Mechanics, Department of Mathematics, Central College Campus, Bangalore University, Bangalore 560 001
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Publisher: Emerald Publishing
Online ISSN: 2515-8082
Print ISSN: 1708-5284
World Journal of Engineering (2011) 8 (4): 335–346.
Citation
Mallika K, Rudraiah N (2011), "Generalized dispersion of unsteady convective diffusion in couple stress poorly conducting fluid bounded by porous layer in the presence of an electric field". World Journal of Engineering, Vol. 8 No. 4 pp. 335–346, doi: https://doi.org/10.1260/1708-5284.8.4.335
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