Second-order slip effect on bio-convectional viscoelastic nanofluid flow through a stretching cylinder with swimming microorganisms and melting phenomenon

Abstract The uses of nanofluid in cooling technology is growing. The nanofluid is made up of metallic and nonmetallic particles that are distributed in a base fluid. This research provides a summary of fuel cell models, uses, and how they function. Researchers have made significant contributions in...

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Autores principales: Hassan Waqas, Umar Farooq, Zahir Shah, Poom Kumam, Meshal Shutaywi
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/502d6aed945d48e3afa5ed7c1f5347d9
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spelling oai:doaj.org-article:502d6aed945d48e3afa5ed7c1f5347d92021-12-02T15:00:25ZSecond-order slip effect on bio-convectional viscoelastic nanofluid flow through a stretching cylinder with swimming microorganisms and melting phenomenon10.1038/s41598-021-90671-z2045-2322https://doaj.org/article/502d6aed945d48e3afa5ed7c1f5347d92021-05-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-90671-zhttps://doaj.org/toc/2045-2322Abstract The uses of nanofluid in cooling technology is growing. The nanofluid is made up of metallic and nonmetallic particles that are distributed in a base fluid. This research provides a summary of fuel cell models, uses, and how they function. Researchers have made significant contributions in the following era due to the importance of bioconvection in nanotechnology and a variety of biological systems. The idea of the recent work is to evaluate the aspects of the Cattaneo–Christov (C–C) heat and mass flux model, the second-order boundary with melting phenomenon on the bioconvective flow of viscoelastic nanofluid across a cylinder. The nature of the activation energy, thermal conductivity is also taken into account. Appropriate similarity transformations are utilized to reframe the PDEs of the modeled system into a system of ODEs. The governing equations for the renovated system of ODEs are treated by a shooting function. Here bvp4c built-in function computational tool MATLAB is used. The two-dimensional flow has ceased application in several areas, such as polymer industry, material synthesis technology, nano-biopolymer computer graphics processing, industry, mechanical engineering, airplane structures, and scientific research, which is much more useful in nanotechnology. The results of emerging important flow-field parameters are investigated with the aid of graphs and numerical results.Hassan WaqasUmar FarooqZahir ShahPoom KumamMeshal ShutaywiNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-16 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Hassan Waqas
Umar Farooq
Zahir Shah
Poom Kumam
Meshal Shutaywi
Second-order slip effect on bio-convectional viscoelastic nanofluid flow through a stretching cylinder with swimming microorganisms and melting phenomenon
description Abstract The uses of nanofluid in cooling technology is growing. The nanofluid is made up of metallic and nonmetallic particles that are distributed in a base fluid. This research provides a summary of fuel cell models, uses, and how they function. Researchers have made significant contributions in the following era due to the importance of bioconvection in nanotechnology and a variety of biological systems. The idea of the recent work is to evaluate the aspects of the Cattaneo–Christov (C–C) heat and mass flux model, the second-order boundary with melting phenomenon on the bioconvective flow of viscoelastic nanofluid across a cylinder. The nature of the activation energy, thermal conductivity is also taken into account. Appropriate similarity transformations are utilized to reframe the PDEs of the modeled system into a system of ODEs. The governing equations for the renovated system of ODEs are treated by a shooting function. Here bvp4c built-in function computational tool MATLAB is used. The two-dimensional flow has ceased application in several areas, such as polymer industry, material synthesis technology, nano-biopolymer computer graphics processing, industry, mechanical engineering, airplane structures, and scientific research, which is much more useful in nanotechnology. The results of emerging important flow-field parameters are investigated with the aid of graphs and numerical results.
format article
author Hassan Waqas
Umar Farooq
Zahir Shah
Poom Kumam
Meshal Shutaywi
author_facet Hassan Waqas
Umar Farooq
Zahir Shah
Poom Kumam
Meshal Shutaywi
author_sort Hassan Waqas
title Second-order slip effect on bio-convectional viscoelastic nanofluid flow through a stretching cylinder with swimming microorganisms and melting phenomenon
title_short Second-order slip effect on bio-convectional viscoelastic nanofluid flow through a stretching cylinder with swimming microorganisms and melting phenomenon
title_full Second-order slip effect on bio-convectional viscoelastic nanofluid flow through a stretching cylinder with swimming microorganisms and melting phenomenon
title_fullStr Second-order slip effect on bio-convectional viscoelastic nanofluid flow through a stretching cylinder with swimming microorganisms and melting phenomenon
title_full_unstemmed Second-order slip effect on bio-convectional viscoelastic nanofluid flow through a stretching cylinder with swimming microorganisms and melting phenomenon
title_sort second-order slip effect on bio-convectional viscoelastic nanofluid flow through a stretching cylinder with swimming microorganisms and melting phenomenon
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/502d6aed945d48e3afa5ed7c1f5347d9
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AT umarfarooq secondorderslipeffectonbioconvectionalviscoelasticnanofluidflowthroughastretchingcylinderwithswimmingmicroorganismsandmeltingphenomenon
AT zahirshah secondorderslipeffectonbioconvectionalviscoelasticnanofluidflowthroughastretchingcylinderwithswimmingmicroorganismsandmeltingphenomenon
AT poomkumam secondorderslipeffectonbioconvectionalviscoelasticnanofluidflowthroughastretchingcylinderwithswimmingmicroorganismsandmeltingphenomenon
AT meshalshutaywi secondorderslipeffectonbioconvectionalviscoelasticnanofluidflowthroughastretchingcylinderwithswimmingmicroorganismsandmeltingphenomenon
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