Analysis of couple stress fluid flow with variable viscosity using two homotopy-based methods

Author:

Khan Alamgeer1,Farooq Muhammad1,Nawaz Rashid1,Ayaz Muhammad1,Ahmad Hijaz2,Abu-Zinadah Hanaa3,Chu Yu-Ming45

Affiliation:

1. Department of Mathematics, Abdul Wali Khan University, Garden Campus , Mardan , KP , Pakistan

2. Department of Basic Sciences, University of Engineering and Technology , Peshawar , KP , Pakistan

3. Department of Statistics, University of Jeddah, College of Science , Jeddah , Saudi Arabia

4. Department of Mathematics, Huzhou University , Huzhou 313000 , China

5. Hunan Provincial Key Laboratory of Mathematical Modeling and Analysis in Engineering, Changasha, University of Science and Technology , Changsha 410114 , China

Abstract

Abstract In this article, the generalized plane Couette flow of Vogel’s model of incompressible, non-isothermal, couple stress fluid flowing steadily between two parallel walls is investigated. The governing equations are reduced to ordinary differential equations. To investigate the non-linear coupled system of differential equations, the optimal homotopy asymptotic method with DJ polynomial and asymptotic homotopy perturbation method have been used. Important flow properties are presented and discussed. We have obtained expressions for velocity, average velocity, shear stress, volume flux and temperature. The results gained employing these techniques are in the form of infinite series; thus, the results can be easily calculated. Comparison of various results, obtained through the suggested approaches, is carried out and an excellent agreement is achieved.

Publisher

Walter de Gruyter GmbH

Subject

General Physics and Astronomy

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