Publication | Open Access
Three dimensional peristaltic flow of hyperbolic tangent fluid in non-uniform channel having flexible walls
93
Citations
39
References
2015
Year
Rarefied FlowUnsteady FlowMultiscale HydrodynamicsFluid PropertiesEngineeringDimensional Peristaltic FlowFluid MechanicsHydrodynamicsHyperbolic Tangent FluidHyperbolic Conservation LawFlow PhysicHydromechanicsTransport PhenomenaMultiphase FlowBoundary LayerFlexible WallsWall RigidityHydrodynamic Stability
In this present analysis, three dimensional peristaltic flow of hyperbolic tangent fluid in a non-uniform channel has been investigated. We have considered that the pressure is uniform over the whole cross section and the interial effects have been neglected. For this purpose we consider laminar flow under the assumptions of long wavelength (λ→∞) and creeping flow (Re→0) approximations. The attained highly nonlinear equations are solved with the help of Homotopy perturbation method. The influence of various physical parameters of interest is demonstrated graphically for wall tension, mass characterization, damping nature of the wall, wall rigidity, wall elastance, aspect ratio and the Weissenberg number. In this present investigation we found that the magnitude of the velocity is maximum in the center of the channel whereas it is minimum near the walls. Stream lines are also drawn to discuss the trapping mechanism for all the physical parameters. Comparison has also been presented between Newtonian and non-Newtonian fluid.
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