To read this content please select one of the options below:

Heat transport in the convective Casson fluid flow with homogeneous‒heterogeneous reactions in Darcy‒Forchheimer medium

S. Bilal (Department of Mathematics, AIR University, Islamabad, Pakistan)
Muhammad Sohail (Department of Applied Mathematics and Statistics, Institute of Space Technology, Islamabad, Pakistan)
Rahila Naz (Department of Applied Mathematics and Statistics, Institute of Space Technology, Islamabad, Pakistan)

Multidiscipline Modeling in Materials and Structures

ISSN: 1573-6105

Article publication date: 16 August 2019

Issue publication date: 21 October 2019

73

Abstract

Purpose

The purpose of this paper is to highlight the studies of momentum and transmission of heat on mixed convection boundary layer Darcy‒Forchheimer flow of Casson liquid over a linear extending surface in a porous medium. The belongings of homogeneous‒heterogeneous retorts are also affianced. The mechanism of heat transmission is braced out in the form of Cattaneo‒Christov heat flux. Appropriate restorations are smeared to revolutionize coupled nonlinear partial differential equations conforming to momentum, energy and concentration of homogeneous‒heterogeneous reaction equations into coupled nonlinear ordinary differential equations (ODEs).

Design/methodology/approach

Numerical elucidations of the transmogrified ODEs are accomplished via a dexterous and trustworthy scheme, namely optimal homotopy analysis method. The convergence of planned scheme is exposed with the support of error table.

Findings

The exploration of mixed convection Darcy‒Forchheimer MHD boundary layer flow of incompressible Casson fluid by the linear stretched surface with Cattaneo‒Christov heat flux model and homogeneous‒heterogeneous reactions is checked in this research. Imitations of the core subsidized flow parameters on velocity, temperature and concentration of homogeneous‒heterogeneous reactions solutions are conscripted. From the recent deliberation, remarkable annotations are as follows: non-dimensional velocities in xa− and xb− directions shrink, whereas the non-dimensional temperature upsurges when the Casson fluid parameter ameliorates. Similar impact of Casson fluid parameter, magnetic parameter, mixed convection parameter, inertia parameter, and porosity parameter is observed for both the components of velocity field. An escalation in magnetic parameter shows the opposite attitude of temperature field as compared with velocity profile. Similar bearing of Casson fluid parameter is observed for both temperature and velocity fields. Enhancement in concentration rate is observed for growing values of (Ns) and (Sc), and it reduces for (k1). Both temperature and concentration of homogeneous‒heterogeneous upturn by mounting the magnetic parameter. Demeanor of magnetic parameter, Casson fluid parameter, heat generation parameter is opposite to that of Prandtl number and thermal relaxation parameter on temperature profile.

Practical implications

In many industrial and engineering applications, the current exploration is utilized for the transport of heat and mass in any system.

Originality/value

As far as novelty of this work is concerned this is an innovative study and such analysis has not been considered so far.

Keywords

Citation

Bilal, S., Sohail, M. and Naz, R. (2019), "Heat transport in the convective Casson fluid flow with homogeneous‒heterogeneous reactions in Darcy‒Forchheimer medium", Multidiscipline Modeling in Materials and Structures, Vol. 15 No. 6, pp. 1170-1189. https://doi.org/10.1108/MMMS-11-2018-0202

Publisher

:

Emerald Publishing Limited

Copyright © 2019, Emerald Publishing Limited

Related articles