4.7 Article

Magnetohydrodynamics (MHD) flow of a tangent hyperbolic fluid with nanoparticles past a stretching sheet with second order slip and convective boundary condition

期刊

RESULTS IN PHYSICS
卷 7, 期 -, 页码 3723-3731

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.rinp.2017.09.041

关键词

Tangent hyperbolic fluid; Second order slip flow; MHD; Convective boundary condition; Radiation effect; Passive control of nanoparticles

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This article presents the effect of thermal radiation on magnetohydrodynamic flow of tangent hyperbolic fluid with nanoparticle past an enlarging sheet with second order slip and convective boundary condition. Condition of zero normal flux of nanoparticles at the wall is used for the concentration boundary condition, which is the current topic that have yet to be studied extensively. The solution for the velocity, temperature and nanoparticle concentration is governed by parameters viz. power-law index (n), Weissenberg number We, Biot number Bi, Prandtl number Pr, velocity slip parameters delta and gamma, Lewis number Le, Brownian motion parameter Nb and the thermophoresis parameter Nt. Similarity transformation is used to metamorphosed the governing non-linear boundary-value problem into coupled higher order non-linear ordinary differential equation. The succeeding equations were numerically solved using the function bvp4c from the matlab for different values of emerging parameters. Numerical results are deliberated through graphs and tables for velocity, temperature, concentration, the skin friction coefficient and local Nusselt number. The results designate that the skin friction coefficient C-f deplete as the values of Weissenberg number We, slip parameters gamma and delta upturn and it rises as the values of power-law index n increase. The local Nusselt number -theta'(theta) decreases as slip parameters c and d, radiation parameter Nr, Weissenberg number We, thermophoresis parameter Nt and power-law index n increase. However, the local Nusselt number increases as the Biot number Bi increase. (C) 2017 Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license.

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