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Stagnation point flow with time-dependent bionanofluid past a sheet: Richardson extrapolation technique

Naganthran, Kohilavani and Md. Basir, Md. Faisal and Alharbi, Sayer Obaid and Nazar, Roslinda and Alwatban, Anas M. and Tlili, Iskander (2019) Stagnation point flow with time-dependent bionanofluid past a sheet: Richardson extrapolation technique. Processes, 7 (10). pp. 1-14. ISSN 2227-9717

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Official URL: http://dx.doi.org/10.3390/pr7100722

Abstract

The study of laminar flow of heat and mass transfer over a moving surface in bionanofluid is of considerable interest because of its importance for industrial and technological processes such as fabrication of bio-nano materials and thermally enhanced media for bio-inspired fuel cells. Hence, the present work deals with the unsteady bionanofluid flow, heat and mass transfer past an impermeable stretching/shrinking sheet. The appropriate similarity solutions transform the boundary layer equations with three independent variables to a system of ordinary differential equations with one independent variable. The finite difference coupled with the Richardson extrapolation technique in the Maple software solves the reduced system, numerically. The rate of heat transfer is found to be higher when the flow is decelerated past a stretching sheet. It is understood that the state of shrinking sheet limits the rate of heat transfer and the density of the motile microorganisms in the stagnation region.

Item Type:Article
Uncontrolled Keywords:nanofluid, stagnation-point flow, stretching/shrinking sheet
Subjects:Q Science > QA Mathematics
Divisions:Science
ID Code:89371
Deposited By: Yanti Mohd Shah
Deposited On:22 Feb 2021 06:04
Last Modified:22 Feb 2021 06:04

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