Combined effects of variable viscosity and thermophoretic transportation on mixed convection flow around the surface of a sphere

The physical behavior of the combined effect of temperature dependent viscosity and thermophoretic motion on mixed convection flow around the surface of a sphere is investigated. The set of non-linear coupled PDE is formulated and then non-dimensionalized by using an appropriate set of dimensionless...

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Main Authors: Abbas Amir, Ashraf Muhmmad
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2020-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2020/0354-98362000137A.pdf
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spelling doaj-0922d7260dac4de9a047fd4d34b9af502021-02-05T08:41:46ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632020-01-01246 Part B4089410110.2298/TSCI190518137A0354-98362000137ACombined effects of variable viscosity and thermophoretic transportation on mixed convection flow around the surface of a sphereAbbas Amir0Ashraf Muhmmad1Department of Mathematics, Faculty of Science, University of Sargodha, Sargodha, PakistanDepartment of Mathematics, Faculty of Science, University of Sargodha, Sargodha, PakistanThe physical behavior of the combined effect of temperature dependent viscosity and thermophoretic motion on mixed convection flow around the surface of a sphere is investigated. The set of non-linear coupled PDE is formulated and then non-dimensionalized by using an appropriate set of dimensionless variables. The dimensionless model is then transformed to convenient form for integration by employing a suitable set of primitive variables formulation and then discretized by using an efficient implicate finite difference scheme for numerical simulation. The effect of controlling parameters on velocity profile, temperature profile, and mass concentration as well as skin friction, rate of heat transfer, and mass transfer rate are analyzed. The obtained numerical results for different values of controlling parameters indicate that, velocity profile gains its largest magnitude at position X = 1.5 radian and slows down at postion X = π radian. It is also predicted that the temperature distribution and mass concentration are diluted at position X = 1.5 radian due to rapid motion of fluid. The numerical results are highlighted in graphical as well as in tabular form.http://www.doiserbia.nb.rs/img/doi/0354-9836/2020/0354-98362000137A.pdfthermophoretic transportationtemperature dependent viscositymixed convectionsphereimplicite finite difference method
collection DOAJ
language English
format Article
sources DOAJ
author Abbas Amir
Ashraf Muhmmad
spellingShingle Abbas Amir
Ashraf Muhmmad
Combined effects of variable viscosity and thermophoretic transportation on mixed convection flow around the surface of a sphere
Thermal Science
thermophoretic transportation
temperature dependent viscosity
mixed convection
sphere
implicite finite difference method
author_facet Abbas Amir
Ashraf Muhmmad
author_sort Abbas Amir
title Combined effects of variable viscosity and thermophoretic transportation on mixed convection flow around the surface of a sphere
title_short Combined effects of variable viscosity and thermophoretic transportation on mixed convection flow around the surface of a sphere
title_full Combined effects of variable viscosity and thermophoretic transportation on mixed convection flow around the surface of a sphere
title_fullStr Combined effects of variable viscosity and thermophoretic transportation on mixed convection flow around the surface of a sphere
title_full_unstemmed Combined effects of variable viscosity and thermophoretic transportation on mixed convection flow around the surface of a sphere
title_sort combined effects of variable viscosity and thermophoretic transportation on mixed convection flow around the surface of a sphere
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
2334-7163
publishDate 2020-01-01
description The physical behavior of the combined effect of temperature dependent viscosity and thermophoretic motion on mixed convection flow around the surface of a sphere is investigated. The set of non-linear coupled PDE is formulated and then non-dimensionalized by using an appropriate set of dimensionless variables. The dimensionless model is then transformed to convenient form for integration by employing a suitable set of primitive variables formulation and then discretized by using an efficient implicate finite difference scheme for numerical simulation. The effect of controlling parameters on velocity profile, temperature profile, and mass concentration as well as skin friction, rate of heat transfer, and mass transfer rate are analyzed. The obtained numerical results for different values of controlling parameters indicate that, velocity profile gains its largest magnitude at position X = 1.5 radian and slows down at postion X = π radian. It is also predicted that the temperature distribution and mass concentration are diluted at position X = 1.5 radian due to rapid motion of fluid. The numerical results are highlighted in graphical as well as in tabular form.
topic thermophoretic transportation
temperature dependent viscosity
mixed convection
sphere
implicite finite difference method
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2020/0354-98362000137A.pdf
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AT ashrafmuhmmad combinedeffectsofvariableviscosityandthermophoretictransportationonmixedconvectionflowaroundthesurfaceofasphere
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