Navier Slip Condition on Time-Dependent Radiating Nanofluid with the Soret Effect

This work concentrates on the study of the two-dimensional hydromagnetic flow of nanofluids over an suddenly started nonlinear stretching sheet in the presence of radiation and dissipation. The Soret effect and heat generation are also taken into consideration. The transformed ordinary differential...

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Main Authors: Sangapatnam SUNEETHA, Ketineni SUBBARAYUDU, Lalahamed WAHIDUNNISA, Bala Anki Reddy POLU
Format: Article
Language:English
Published: Institute of Fundamental Technological Research 2020-06-01
Series:Engineering Transactions
Subjects:
Online Access:https://et.ippt.pan.pl/index.php/et/article/view/925
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author Sangapatnam SUNEETHA
Ketineni SUBBARAYUDU
Lalahamed WAHIDUNNISA
Bala Anki Reddy POLU
author_facet Sangapatnam SUNEETHA
Ketineni SUBBARAYUDU
Lalahamed WAHIDUNNISA
Bala Anki Reddy POLU
author_sort Sangapatnam SUNEETHA
collection DOAJ
description This work concentrates on the study of the two-dimensional hydromagnetic flow of nanofluids over an suddenly started nonlinear stretching sheet in the presence of radiation and dissipation. The Soret effect and heat generation are also taken into consideration. The transformed ordinary differential equations (ODEs) are solved numerically via the MATLAB RK4S approach bvp4c solver with the assistance of similarity variables. The effects of various parameters are explored and shown in graphs and tables. It is noted that the concentration increases as the Soret number increases within the boundary layer. An increase in velocity slip decreases the velocity and a reverse effect is observed for temperature. This model has significance in different areas such as polymer chemical and metallurgical industries, and other fields that use the latest technology and thermo-processed materials such as metallic and glass sheets.
format Article
id doaj-art-2a630868a5bd4e6c971006e1e435f684
institution Kabale University
issn 0867-888X
2450-8071
language English
publishDate 2020-06-01
publisher Institute of Fundamental Technological Research
record_format Article
series Engineering Transactions
spelling doaj-art-2a630868a5bd4e6c971006e1e435f6842025-08-20T03:49:51ZengInstitute of Fundamental Technological ResearchEngineering Transactions0867-888X2450-80712020-06-0168210.24423/EngTrans.925.20200601Navier Slip Condition on Time-Dependent Radiating Nanofluid with the Soret EffectSangapatnam SUNEETHA0Ketineni SUBBARAYUDU1Lalahamed WAHIDUNNISA2Bala Anki Reddy POLU3Yogi Vemana UniversityYogi Vemana UniversityYogi Vemana UniversityVIT UniversityThis work concentrates on the study of the two-dimensional hydromagnetic flow of nanofluids over an suddenly started nonlinear stretching sheet in the presence of radiation and dissipation. The Soret effect and heat generation are also taken into consideration. The transformed ordinary differential equations (ODEs) are solved numerically via the MATLAB RK4S approach bvp4c solver with the assistance of similarity variables. The effects of various parameters are explored and shown in graphs and tables. It is noted that the concentration increases as the Soret number increases within the boundary layer. An increase in velocity slip decreases the velocity and a reverse effect is observed for temperature. This model has significance in different areas such as polymer chemical and metallurgical industries, and other fields that use the latest technology and thermo-processed materials such as metallic and glass sheets.https://et.ippt.pan.pl/index.php/et/article/view/925nanofluidsMHDthermal radiationviscous dissipationheat generationSoret effect
spellingShingle Sangapatnam SUNEETHA
Ketineni SUBBARAYUDU
Lalahamed WAHIDUNNISA
Bala Anki Reddy POLU
Navier Slip Condition on Time-Dependent Radiating Nanofluid with the Soret Effect
Engineering Transactions
nanofluids
MHD
thermal radiation
viscous dissipation
heat generation
Soret effect
title Navier Slip Condition on Time-Dependent Radiating Nanofluid with the Soret Effect
title_full Navier Slip Condition on Time-Dependent Radiating Nanofluid with the Soret Effect
title_fullStr Navier Slip Condition on Time-Dependent Radiating Nanofluid with the Soret Effect
title_full_unstemmed Navier Slip Condition on Time-Dependent Radiating Nanofluid with the Soret Effect
title_short Navier Slip Condition on Time-Dependent Radiating Nanofluid with the Soret Effect
title_sort navier slip condition on time dependent radiating nanofluid with the soret effect
topic nanofluids
MHD
thermal radiation
viscous dissipation
heat generation
Soret effect
url https://et.ippt.pan.pl/index.php/et/article/view/925
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AT ketinenisubbarayudu navierslipconditionontimedependentradiatingnanofluidwiththesoreteffect
AT lalahamedwahidunnisa navierslipconditionontimedependentradiatingnanofluidwiththesoreteffect
AT balaankireddypolu navierslipconditionontimedependentradiatingnanofluidwiththesoreteffect