Impact of Newtonian heating and Fourier and Fick’s laws on a magnetohydrodynamic dusty Casson nanofluid flow with variable heat source/sink over a stretching cylinder

Abstract The present investigation aims to deliberate the magnetohydrodynamic (MHD) dusty Casson nanofluid with variable heat source/sink and modified Fourier’s and Fick’s laws over a stretching cylinder. The novelty of the flow model is enhanced with additional effects of the Newtonian heating, act...

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Autores principales: Muhammad Ramzan, Naila Shaheen, Jae Dong Chung, Seifedine Kadry, Yu-Ming Chu, Fares Howari
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/b5df447dc7cf4164a205dbce65ffc756
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spelling oai:doaj.org-article:b5df447dc7cf4164a205dbce65ffc7562021-12-02T13:23:58ZImpact of Newtonian heating and Fourier and Fick’s laws on a magnetohydrodynamic dusty Casson nanofluid flow with variable heat source/sink over a stretching cylinder10.1038/s41598-021-81747-x2045-2322https://doaj.org/article/b5df447dc7cf4164a205dbce65ffc7562021-01-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-81747-xhttps://doaj.org/toc/2045-2322Abstract The present investigation aims to deliberate the magnetohydrodynamic (MHD) dusty Casson nanofluid with variable heat source/sink and modified Fourier’s and Fick’s laws over a stretching cylinder. The novelty of the flow model is enhanced with additional effects of the Newtonian heating, activation energy, and an exothermic chemical reaction. In an exothermic chemical reaction, the energy of the reactants is higher than the end products. The solution to the formulated problem is attained numerically by employing the MATLAB software function bvp4c. The behavior of flow parameters versus involved profiles is discussed graphically at length. For large values of momentum dust particles, the velocity field for the fluid flow declines, whereas an opposite trend is perceived for the dust phase. An escalation is noticed for the Newtonian heating in the temperature profile for both the fluid and dust-particle phase. A comparison is also added with an already published work to check the validity of the envisioned problem.Muhammad RamzanNaila ShaheenJae Dong ChungSeifedine KadryYu-Ming ChuFares HowariNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-19 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Muhammad Ramzan
Naila Shaheen
Jae Dong Chung
Seifedine Kadry
Yu-Ming Chu
Fares Howari
Impact of Newtonian heating and Fourier and Fick’s laws on a magnetohydrodynamic dusty Casson nanofluid flow with variable heat source/sink over a stretching cylinder
description Abstract The present investigation aims to deliberate the magnetohydrodynamic (MHD) dusty Casson nanofluid with variable heat source/sink and modified Fourier’s and Fick’s laws over a stretching cylinder. The novelty of the flow model is enhanced with additional effects of the Newtonian heating, activation energy, and an exothermic chemical reaction. In an exothermic chemical reaction, the energy of the reactants is higher than the end products. The solution to the formulated problem is attained numerically by employing the MATLAB software function bvp4c. The behavior of flow parameters versus involved profiles is discussed graphically at length. For large values of momentum dust particles, the velocity field for the fluid flow declines, whereas an opposite trend is perceived for the dust phase. An escalation is noticed for the Newtonian heating in the temperature profile for both the fluid and dust-particle phase. A comparison is also added with an already published work to check the validity of the envisioned problem.
format article
author Muhammad Ramzan
Naila Shaheen
Jae Dong Chung
Seifedine Kadry
Yu-Ming Chu
Fares Howari
author_facet Muhammad Ramzan
Naila Shaheen
Jae Dong Chung
Seifedine Kadry
Yu-Ming Chu
Fares Howari
author_sort Muhammad Ramzan
title Impact of Newtonian heating and Fourier and Fick’s laws on a magnetohydrodynamic dusty Casson nanofluid flow with variable heat source/sink over a stretching cylinder
title_short Impact of Newtonian heating and Fourier and Fick’s laws on a magnetohydrodynamic dusty Casson nanofluid flow with variable heat source/sink over a stretching cylinder
title_full Impact of Newtonian heating and Fourier and Fick’s laws on a magnetohydrodynamic dusty Casson nanofluid flow with variable heat source/sink over a stretching cylinder
title_fullStr Impact of Newtonian heating and Fourier and Fick’s laws on a magnetohydrodynamic dusty Casson nanofluid flow with variable heat source/sink over a stretching cylinder
title_full_unstemmed Impact of Newtonian heating and Fourier and Fick’s laws on a magnetohydrodynamic dusty Casson nanofluid flow with variable heat source/sink over a stretching cylinder
title_sort impact of newtonian heating and fourier and fick’s laws on a magnetohydrodynamic dusty casson nanofluid flow with variable heat source/sink over a stretching cylinder
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/b5df447dc7cf4164a205dbce65ffc756
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