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Mixed Convective Flow of Jeffrey Nanofluid over an Inclined Stretching Sheet
Author(s):
1. Rabia Malik: International Islamic University, Islamabad, Pakistan
2. Ayesha Siddiqua: International Islamic University, Islamabad, Pakistan
Abstract:
The main purpose of this article is to study the 2-dimensional flow of Jeffrey nanofluid by the stretching of a sheet on which fluid is placed. The boundary condition are presume to be convective. By using suitable similarity transformations the partial differential equations which are modelled corresponding to the present problem are converted into the differential equations with ordinary derivatives. The converted differential equations involving ordinary derivatives are resolved by an analytical method called Homotopy Analysis Method (HAM). The effect of involved parameters e.g., Biot number, Brownian motion parameter, thermophoresis parameter and Lewis number are studied over velocity, temperature and concentration profiles. Furthermore, the local skin fraction coefficient and local Nusselt number are discussed through graphs.
Page(s): 0-0
DOI: DOI not available
Published: Journal: First International Conference on Revamped Scientific Outlook of 21st Century (Abstract Book), Volume: 0, Issue: 0, Year: 2022
Keywords:
Convective Boundary Conditions , Homotopy Analysis Method , Brownian motion , Jeffrey Nanofluid
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