Thermal dissipation of two-step combustible tangent hyperbolic fluid with quadratic Boussinesq approximation and convective cooling

This study explores thermal criticality and dissipation involving a two-step reaction in a hyperbolic tangential fluid flow and quadratic Boussinesq approximation to model the complex internal heat transfer mechanisms during combustion. Subject to suitable convective boundary conditions, the transfo...

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Main Authors: A.D. Ohaegbue, S.O. Salawu, R.A. Oderinu, E.O. Fatunmbi, A.O. Akindele
Format: Article
Language:English
Published: Elsevier 2024-06-01
Series:Results in Materials
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590048X24000396
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author A.D. Ohaegbue
S.O. Salawu
R.A. Oderinu
E.O. Fatunmbi
A.O. Akindele
author_facet A.D. Ohaegbue
S.O. Salawu
R.A. Oderinu
E.O. Fatunmbi
A.O. Akindele
author_sort A.D. Ohaegbue
collection DOAJ
description This study explores thermal criticality and dissipation involving a two-step reaction in a hyperbolic tangential fluid flow and quadratic Boussinesq approximation to model the complex internal heat transfer mechanisms during combustion. Subject to suitable convective boundary conditions, the transformed energy and momentum equations are numerically solved using Galerkin approximation integration coupled with a weighted residual scheme. The outcomes are disseminated using a variety of graphs to illustrate for parametric sensitivities of the thermal and velocity profiles. Based on the results, it is discovered that increases in the Frank-Kamenetskii parameter, Brinkman number, Weissenberg number, activation energy, activation ratio term, and second step term all aid in the complete combustion of hydrocarbons. Monitoring all terms that stimulate internal heat generation is essential to avoid system blow-ups.
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spelling doaj.art-f74848d90976453ba8d42d750c95b05c2024-03-30T04:39:56ZengElsevierResults in Materials2590-048X2024-06-0122100565Thermal dissipation of two-step combustible tangent hyperbolic fluid with quadratic Boussinesq approximation and convective coolingA.D. Ohaegbue0S.O. Salawu1R.A. Oderinu2E.O. Fatunmbi3A.O. Akindele4Department of Mathematics, Ladoke Akintola University of Technology, Ogbomoso, Nigeria; Corresponding author.Department of Mathematics, Bowen University, Iwo, NigeriaDepartment of Mathematics, Ladoke Akintola University of Technology, Ogbomoso, NigeriaDepartment of Mathematics and Statistics, Federal Polytechnic, Ilaro, NigeriaDepartment of Mathematics, Ladoke Akintola University of Technology, Ogbomoso, NigeriaThis study explores thermal criticality and dissipation involving a two-step reaction in a hyperbolic tangential fluid flow and quadratic Boussinesq approximation to model the complex internal heat transfer mechanisms during combustion. Subject to suitable convective boundary conditions, the transformed energy and momentum equations are numerically solved using Galerkin approximation integration coupled with a weighted residual scheme. The outcomes are disseminated using a variety of graphs to illustrate for parametric sensitivities of the thermal and velocity profiles. Based on the results, it is discovered that increases in the Frank-Kamenetskii parameter, Brinkman number, Weissenberg number, activation energy, activation ratio term, and second step term all aid in the complete combustion of hydrocarbons. Monitoring all terms that stimulate internal heat generation is essential to avoid system blow-ups.http://www.sciencedirect.com/science/article/pii/S2590048X24000396Hyperbolic tangent fluidNonlinear Boussinesq approximationTwo-step combustible reactionConvective coolingMagnetic field strength
spellingShingle A.D. Ohaegbue
S.O. Salawu
R.A. Oderinu
E.O. Fatunmbi
A.O. Akindele
Thermal dissipation of two-step combustible tangent hyperbolic fluid with quadratic Boussinesq approximation and convective cooling
Results in Materials
Hyperbolic tangent fluid
Nonlinear Boussinesq approximation
Two-step combustible reaction
Convective cooling
Magnetic field strength
title Thermal dissipation of two-step combustible tangent hyperbolic fluid with quadratic Boussinesq approximation and convective cooling
title_full Thermal dissipation of two-step combustible tangent hyperbolic fluid with quadratic Boussinesq approximation and convective cooling
title_fullStr Thermal dissipation of two-step combustible tangent hyperbolic fluid with quadratic Boussinesq approximation and convective cooling
title_full_unstemmed Thermal dissipation of two-step combustible tangent hyperbolic fluid with quadratic Boussinesq approximation and convective cooling
title_short Thermal dissipation of two-step combustible tangent hyperbolic fluid with quadratic Boussinesq approximation and convective cooling
title_sort thermal dissipation of two step combustible tangent hyperbolic fluid with quadratic boussinesq approximation and convective cooling
topic Hyperbolic tangent fluid
Nonlinear Boussinesq approximation
Two-step combustible reaction
Convective cooling
Magnetic field strength
url http://www.sciencedirect.com/science/article/pii/S2590048X24000396
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