An assessment of the mathematical model for estimating of entropy optimized viscous fluid flow towards a rotating cone surface

Abstract Entropy optimization in convective viscous fluids flow due to a rotating cone is explored. Heat expression with heat source/sink and dissipation is considered. Irreversibility with binary chemical reaction is also deliberated. Nonlinear system is reduced to ODEs by suitable variables. Newto...

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Autores principales: Yong-Min Li, M. Ijaz Khan, Sohail A. Khan, Sami Ullah Khan, Zahir Shah, Poom Kumam
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/003b93e5344d4abcb399972221d55b53
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spelling oai:doaj.org-article:003b93e5344d4abcb399972221d55b532021-12-02T17:16:06ZAn assessment of the mathematical model for estimating of entropy optimized viscous fluid flow towards a rotating cone surface10.1038/s41598-021-89739-72045-2322https://doaj.org/article/003b93e5344d4abcb399972221d55b532021-05-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-89739-7https://doaj.org/toc/2045-2322Abstract Entropy optimization in convective viscous fluids flow due to a rotating cone is explored. Heat expression with heat source/sink and dissipation is considered. Irreversibility with binary chemical reaction is also deliberated. Nonlinear system is reduced to ODEs by suitable variables. Newton built in shooting procedure is adopted for numerical solution. Salient features velocity filed, Bejan number, entropy rate, concentration and temperature are deliberated. Numerical outcomes for velocity gradient and mass and heat transfer rates are displayed through tables. Assessments between the current and previous published outcomes are in an excellent agreement. It is noted that velocity and temperature show contrasting behavior for larger variable viscosity parameter. Entropy rate and Bejan number have reverse effect against viscosity variable. For rising values of thermal conductivity variable both Bejan number and entropy optimization have similar effect.Yong-Min LiM. Ijaz KhanSohail A. KhanSami Ullah KhanZahir ShahPoom KumamNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-15 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Yong-Min Li
M. Ijaz Khan
Sohail A. Khan
Sami Ullah Khan
Zahir Shah
Poom Kumam
An assessment of the mathematical model for estimating of entropy optimized viscous fluid flow towards a rotating cone surface
description Abstract Entropy optimization in convective viscous fluids flow due to a rotating cone is explored. Heat expression with heat source/sink and dissipation is considered. Irreversibility with binary chemical reaction is also deliberated. Nonlinear system is reduced to ODEs by suitable variables. Newton built in shooting procedure is adopted for numerical solution. Salient features velocity filed, Bejan number, entropy rate, concentration and temperature are deliberated. Numerical outcomes for velocity gradient and mass and heat transfer rates are displayed through tables. Assessments between the current and previous published outcomes are in an excellent agreement. It is noted that velocity and temperature show contrasting behavior for larger variable viscosity parameter. Entropy rate and Bejan number have reverse effect against viscosity variable. For rising values of thermal conductivity variable both Bejan number and entropy optimization have similar effect.
format article
author Yong-Min Li
M. Ijaz Khan
Sohail A. Khan
Sami Ullah Khan
Zahir Shah
Poom Kumam
author_facet Yong-Min Li
M. Ijaz Khan
Sohail A. Khan
Sami Ullah Khan
Zahir Shah
Poom Kumam
author_sort Yong-Min Li
title An assessment of the mathematical model for estimating of entropy optimized viscous fluid flow towards a rotating cone surface
title_short An assessment of the mathematical model for estimating of entropy optimized viscous fluid flow towards a rotating cone surface
title_full An assessment of the mathematical model for estimating of entropy optimized viscous fluid flow towards a rotating cone surface
title_fullStr An assessment of the mathematical model for estimating of entropy optimized viscous fluid flow towards a rotating cone surface
title_full_unstemmed An assessment of the mathematical model for estimating of entropy optimized viscous fluid flow towards a rotating cone surface
title_sort assessment of the mathematical model for estimating of entropy optimized viscous fluid flow towards a rotating cone surface
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/003b93e5344d4abcb399972221d55b53
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