Three-dimensional couette flow of dusty fluid with heat transfer in the presence of magnetic field

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Abstract

This paper is focused on the mathematical modelling of three-dimensional couette flow and heat transfer of a dusty fluid between two infinite horizontal parallel porous flat plates in the presence of an induced magnetic field. The problem is formulated using a continuum two-phase model and the resulting equations are solved analytically. The lower plate is stationary while the upper plate is undergoing uniform motion in its plane. These plates are, respectively subjected to transverse exponential injection and its corresponding removal by constant suction. Due to this type of injection velocity, the flow becomes three dimensional. The closed-form expressions for velocity and temperature fields of both the fluid and dust phase are obtained by solving the governing partial differentiation equations using the perturbation method. A selective set of graphical results is presented and discussed to show interesting features of the problem. It is found that the velocity profiles of both fluid and dust particles decrease due to the increase of (magnetic parameter) Hartmann number.

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Gayathri, R., Govindarajan, A., & Sasikala, R. (2018). Three-dimensional couette flow of dusty fluid with heat transfer in the presence of magnetic field. In Journal of Physics: Conference Series (Vol. 1000). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/1000/1/012147

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