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Published December 21, 2020 | Version v1
Journal article

Influence of Magnetic Field, Thermal Radiation and Brownian Motion on Water-Based Composite Nanofluid Flow Passing Through a Porous Medium

  • 1. Sardar Vallabhbhai Patel Institute of Technology. Applied Sciences and Humanities Department (India)
  • 2. The Maharaja Sayajirao University of Baroda. Department of Mathematics (India)

Description

This paper explored the effects of a three-dimensional water composite nanofluid fluid flow between two horizontal parallel platelets in a rotating device. Different criteria contrast the flow properties of the conventional fluid (water), nanofluid cup-water, Al2O3 and composite Nanofluid. Through efficient transformations, nonlinear dimensional equations are translated into dimensional expressions. For the resolution of the dimensionless Ordinary differential equations system, a semi-analytical analytical homotopy technique is used. In order to test flow, heat, and mass transmission, a graphical analysis was performed with various variables. Relevant and Graphic view with skin friction numerical values, Nusselt local count and the Sherwood counters. The magnetic parameter has been shown to speed up. Heat transmission also improves through thermophoresis, magnetic field and thermophoresis, whilst thermophoresis, Schmidt numbers and Brownian motion help to reduce the mass transmission.

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Publishing Information

Journal Title
International Journal of Applied and Computational Mathematics (Online)
Journal Volume
7
Journal Issue
1
Journal Page Range
vp.
ISSN
2199-5796

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Copyright (c) 2021 © Springer Nature India Private Limited 2021