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Article type: Research Article
Authors: Rudraiah, N. | Pal, Dulal | Siddheshwar, Pradeep G.
Affiliations: UGC-DSA Centre in Fluid Mechanics, Department of Mathematics, Bangalore University, Central College Campus, Bangalore 560 001, India
Note: [] Accepted by: Editor Y.C.B. Fung
Abstract: A generalized dispersion model is used to obtain exact solution for unsteady convective diffusion in the presence of couple stresses. The effect of the couple stress parameter ‘a’ on the most dominant dispersion coefficient is clearly depicted. The dimensionless mean concentration distribution is obtained as a function of dimensionless axial distance, time and ‘a’. The results for ‘pure convection’ are also reported. It is shown that the effect of couple stress is predominant only for small values of ‘a’ and when a→∞ the flow characteristics tend to their equivalents in Newtonian theory. The results of Taylor’s dispersion model are recovered as a particular case in the limit τ→∞.
Keywords: Couple Stress, Biomechanics, Dispersion, Blood flow
DOI: 10.3233/BIR-1986-23404
Journal: Biorheology, vol. 23, no. 4, pp. 349-358, 1986
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