Two-phase flow of non-newtonian eyring fluid over a vertical stretched surface with temperature dependent viscosity

The investigation of the fluid flow problem via mathematical approach for non-Newtonian fluid is challenging due to the rise in complexity in its model. However, the study still attracted researchers since the model is able to capture properties of the existing fluid involved in industrial applicati...

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Published in:JP Journal of Heat and Mass Transfer
Main Author: Al-Jabali A.M.; Kasim A.R.M.; Arifin N.S.; Isa S.M.; Ariffin N.A.N.
Format: Article
Language:English
Published: Pushpa Publishing House 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85109471371&doi=10.17654%2fHM023010057&partnerID=40&md5=5adeb4ccb4e7beb690d8176c15c2a459
id 2-s2.0-85109471371
spelling 2-s2.0-85109471371
Al-Jabali A.M.; Kasim A.R.M.; Arifin N.S.; Isa S.M.; Ariffin N.A.N.
Two-phase flow of non-newtonian eyring fluid over a vertical stretched surface with temperature dependent viscosity
2021
JP Journal of Heat and Mass Transfer
23
1
10.17654/HM023010057
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85109471371&doi=10.17654%2fHM023010057&partnerID=40&md5=5adeb4ccb4e7beb690d8176c15c2a459
The investigation of the fluid flow problem via mathematical approach for non-Newtonian fluid is challenging due to the rise in complexity in its model. However, the study still attracted researchers since the model is able to capture properties of the existing fluid involved in industrial applications. There are several models representing the non- Newtonian fluid. In this paper, the model of Eyring-Powell fluid with dust particle under influence of temperature dependent viscosity is discussed. The model is formulated using the law of conservation of mass, the first law of thermodynamics and Navier-Stokes equation. The complexity of the model is reduced to a set of ordinary differential equations and the computation is done by using the finite difference method. The validation of the present results is attained by direct comparison with those existing in literature which is found to be in excellent agreement. The investigation revealed the viscosity of the fluid affecting the flow characteristics in both the phases. © 2021 Pushpa Publishing House, Prayagraj, India.
Pushpa Publishing House
9735763
English
Article
All Open Access; Hybrid Gold Open Access
author Al-Jabali A.M.; Kasim A.R.M.; Arifin N.S.; Isa S.M.; Ariffin N.A.N.
spellingShingle Al-Jabali A.M.; Kasim A.R.M.; Arifin N.S.; Isa S.M.; Ariffin N.A.N.
Two-phase flow of non-newtonian eyring fluid over a vertical stretched surface with temperature dependent viscosity
author_facet Al-Jabali A.M.; Kasim A.R.M.; Arifin N.S.; Isa S.M.; Ariffin N.A.N.
author_sort Al-Jabali A.M.; Kasim A.R.M.; Arifin N.S.; Isa S.M.; Ariffin N.A.N.
title Two-phase flow of non-newtonian eyring fluid over a vertical stretched surface with temperature dependent viscosity
title_short Two-phase flow of non-newtonian eyring fluid over a vertical stretched surface with temperature dependent viscosity
title_full Two-phase flow of non-newtonian eyring fluid over a vertical stretched surface with temperature dependent viscosity
title_fullStr Two-phase flow of non-newtonian eyring fluid over a vertical stretched surface with temperature dependent viscosity
title_full_unstemmed Two-phase flow of non-newtonian eyring fluid over a vertical stretched surface with temperature dependent viscosity
title_sort Two-phase flow of non-newtonian eyring fluid over a vertical stretched surface with temperature dependent viscosity
publishDate 2021
container_title JP Journal of Heat and Mass Transfer
container_volume 23
container_issue 1
doi_str_mv 10.17654/HM023010057
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85109471371&doi=10.17654%2fHM023010057&partnerID=40&md5=5adeb4ccb4e7beb690d8176c15c2a459
description The investigation of the fluid flow problem via mathematical approach for non-Newtonian fluid is challenging due to the rise in complexity in its model. However, the study still attracted researchers since the model is able to capture properties of the existing fluid involved in industrial applications. There are several models representing the non- Newtonian fluid. In this paper, the model of Eyring-Powell fluid with dust particle under influence of temperature dependent viscosity is discussed. The model is formulated using the law of conservation of mass, the first law of thermodynamics and Navier-Stokes equation. The complexity of the model is reduced to a set of ordinary differential equations and the computation is done by using the finite difference method. The validation of the present results is attained by direct comparison with those existing in literature which is found to be in excellent agreement. The investigation revealed the viscosity of the fluid affecting the flow characteristics in both the phases. © 2021 Pushpa Publishing House, Prayagraj, India.
publisher Pushpa Publishing House
issn 9735763
language English
format Article
accesstype All Open Access; Hybrid Gold Open Access
record_format scopus
collection Scopus
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