2022Journal of Mathematical Sciences & Computational MathematicsOpen access

Analysis of Heat Transfer in Sisko Nanofluid Over Non Linear Sheet with Suction and Injection

M. Jiya, M.J Mohammed, A.I. Shaba, A. Ghani Saba, E. M. Yisa

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Abstract

This work focus on steady two-dimensional boundary layer flow and heat transfer of sisko nanofluid over non-linear sheet with section and injection. The governing mathematical equation incorporate the influence of Brownian number, Prandtl number, power law and thermophoresis parameter.. Suitable similarity transformation is used to reduce the equation to non-linear ordinary differential equation and solved using Adomian decomposition method (ADM). The result obtained shows thermophoresis number, power law and Prandtl parameter has a positive effect in temperature while thermophoresis number, Brownian number and Prandtl number has no effect on nano concentration profile.

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What this paper is about

This work focus on steady two-dimensional boundary layer flow and heat transfer of sisko nanofluid over non-linear sheet with section and injection. The governing mathematical equation incorporate the influence of Brownian number, Prandtl number, power law and thermophoresis parameter.. Suitable similarity transformation is used to reduce the equation to non-linear ordinary differential equation and solved using Adomian decomposition method (ADM). The result obtained shows thermophoresis number, power law and Prandtl parameter has a positive effect in temperature while thermophoresis number, Brownian number and Prandtl number has no effect on nano concentration profile.

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Available abstract

This work focus on steady two-dimensional boundary layer flow and heat transfer of sisko nanofluid over non-linear sheet with section and injection. The governing mathematical equation incorporate the influence of Brownian number, Prandtl number, power law and thermophoresis parameter.. Suitable similarity transformation is used to reduce the equation to non-linear ordinary differential equation and solved using Adomian decomposition method (ADM). The result obtained shows thermophoresis number, power law and Prandtl parameter has a positive effect in temperature while thermophoresis number, Brownian number and Prandtl number has no effect on nano concentration profile.

Key concepts: Thermophoresis, Prandtl number, Nanofluid, Heat transfer, Mechanics, Similarity solution, Mathematics, Boundary layer

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