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Stretching surface in rotating viscoelastic fluid
Authors:K. Zaimi  A. Ishak  I. Pop
Affiliation:1. Institute of Engineering Mathematics, Universiti Malaysia Perlis, Arau 02600, Malaysia;2. School of Mathematical Sciences, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi 43600, Malaysia;3. Department of Mathematics, Babe¸s-Bolyai University, Cluj-Napoca 400084, Romania
Abstract:
The boundary layer flow over a stretching surface in a rotating viscoelastic fluid is considered. By applying a similarity transformation, the governing partial differential equations are converted into a system of nonlinear ordinary differential equations before being solved numerically by the Keller-box method. The effects of the viscoelastic and rotation parameters on the skin friction coefficients and the velocity profiles are thoroughly examined. The analysis reveals that the skin friction coefficients and the velocity in the x-direction increase as the viscoelastic parameter and the rotation parameter increase. Moreover, the velocity in the y-direction decreases as the viscoelastic parameter and the rotation parameter increase.
Keywords:Brusselator system  Hopf bifurcation  stability   diffusion-driven Hopf bifurcation  boundary layer   stretching surface  similarity transformation   rotating viscoelastic fluid  
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