In this study, the effects of partial slip on the peristaltic flow of a MHD Newtonian fluid in an asymmetric channel are studied analytically and numerically. The governing equations of motion and energy are simplified using a long wavelength approximation. A closed form solution of the momentum equ
Slip effects on the peristaltic flow of a non-Newtonian Maxwellian fluid
β Scribed by E. F. El-Shehawy; N. T. El-Dabe; I. M. El-Desoky
- Publisher
- Springer Vienna
- Year
- 2006
- Tongue
- English
- Weight
- 354 KB
- Volume
- 186
- Category
- Article
- ISSN
- 0001-5970
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π SIMILAR VOLUMES
In microfluidic devices it has been suggested a scheme for enhancing the mixing of two fluids is to use patterned, slip boundary conditions. This has been shown to induce significant transverse flow for Newtonian fluids [S.C. Hendy, M. Jasperse, J. Burnell, Effect of patterned slip on micro-and nano
This paper is devoted to the study of peristaltic flow of a fourth grade fluid in a channel under the considerations of long wavelength and low-Reynolds number. The flow is examined in a wave frame of reference moving with velocity of the wave. The analytic solution has been obtained in the form of