Mathematical Study of unsteady micropolar fluid flow due to non-linear stretched sheet in the presence of magnetic field
The goal of this research is to check irregularity in heat generation, chemical reaction and thermal radiation effect an unsteady micropolar fluid flow. With the help of suitable similarity variables, the group of governing system of PDE and their associative boundary conditions are converted into t...
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Format: | Article |
Language: | English |
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Elsevier
2022-11-01
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Series: | International Journal of Thermofluids |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S2666202722000957 |
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author | Harshad R Patel Snehal D Patel Rakesh Darji |
author_facet | Harshad R Patel Snehal D Patel Rakesh Darji |
author_sort | Harshad R Patel |
collection | DOAJ |
description | The goal of this research is to check irregularity in heat generation, chemical reaction and thermal radiation effect an unsteady micropolar fluid flow. With the help of suitable similarity variables, the group of governing system of PDE and their associative boundary conditions are converted into the family of ODE and then solved using the HAM. The effect of various and important dimensionless parameters on the momentum, micro-rotation, energy and concentration equations have been discussed with graphical representation as well as tabular forms. It is observed that buoyancy force parameter, mixed convection parameter and permeability parameter enhance the velocity distribution while micropolar reduces the velocity profile. The temperature profiles are boosted for time and space dependent heat generation and absorption parameter respectively but reverse trend is observed for Prandtl number and unsteadiness parameter. Skin-friction factor, mass transfer rate and heat transfer rate have been listed and displayed in tables. |
first_indexed | 2024-04-11T14:51:41Z |
format | Article |
id | doaj.art-63a45b8205f5455b9280bfc4903f0eb7 |
institution | Directory Open Access Journal |
issn | 2666-2027 |
language | English |
last_indexed | 2024-04-11T14:51:41Z |
publishDate | 2022-11-01 |
publisher | Elsevier |
record_format | Article |
series | International Journal of Thermofluids |
spelling | doaj.art-63a45b8205f5455b9280bfc4903f0eb72022-12-22T04:17:25ZengElsevierInternational Journal of Thermofluids2666-20272022-11-0116100232Mathematical Study of unsteady micropolar fluid flow due to non-linear stretched sheet in the presence of magnetic fieldHarshad R Patel0Snehal D Patel1Rakesh Darji2Humanity and Basic science Department, U V Patel College of Engineering Mehsana IndiaHumanity and Basic science Department, U V Patel College of Engineering Mehsana India; Corresponding author.Humanity and Basic science Department, U V Patel College of Engineering Mehsana India; Applied Science and Humanities Department SVIT, Vasad, IndiaThe goal of this research is to check irregularity in heat generation, chemical reaction and thermal radiation effect an unsteady micropolar fluid flow. With the help of suitable similarity variables, the group of governing system of PDE and their associative boundary conditions are converted into the family of ODE and then solved using the HAM. The effect of various and important dimensionless parameters on the momentum, micro-rotation, energy and concentration equations have been discussed with graphical representation as well as tabular forms. It is observed that buoyancy force parameter, mixed convection parameter and permeability parameter enhance the velocity distribution while micropolar reduces the velocity profile. The temperature profiles are boosted for time and space dependent heat generation and absorption parameter respectively but reverse trend is observed for Prandtl number and unsteadiness parameter. Skin-friction factor, mass transfer rate and heat transfer rate have been listed and displayed in tables.http://www.sciencedirect.com/science/article/pii/S2666202722000957Mixed convectionMagneto-hydro-dynamicsNon-uniform heat sourceNon-linear stretched sheetNusselt numberMicropolar fluid |
spellingShingle | Harshad R Patel Snehal D Patel Rakesh Darji Mathematical Study of unsteady micropolar fluid flow due to non-linear stretched sheet in the presence of magnetic field International Journal of Thermofluids Mixed convection Magneto-hydro-dynamics Non-uniform heat source Non-linear stretched sheet Nusselt number Micropolar fluid |
title | Mathematical Study of unsteady micropolar fluid flow due to non-linear stretched sheet in the presence of magnetic field |
title_full | Mathematical Study of unsteady micropolar fluid flow due to non-linear stretched sheet in the presence of magnetic field |
title_fullStr | Mathematical Study of unsteady micropolar fluid flow due to non-linear stretched sheet in the presence of magnetic field |
title_full_unstemmed | Mathematical Study of unsteady micropolar fluid flow due to non-linear stretched sheet in the presence of magnetic field |
title_short | Mathematical Study of unsteady micropolar fluid flow due to non-linear stretched sheet in the presence of magnetic field |
title_sort | mathematical study of unsteady micropolar fluid flow due to non linear stretched sheet in the presence of magnetic field |
topic | Mixed convection Magneto-hydro-dynamics Non-uniform heat source Non-linear stretched sheet Nusselt number Micropolar fluid |
url | http://www.sciencedirect.com/science/article/pii/S2666202722000957 |
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