Two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet

In this work, the mixed convection flow of non-Newtonian Eyring–Powell fluid with the effects of temperature dependent viscosity (TDV) were studied together with the interaction of dust particles under the influence of Newtonian Heating (NH) boundary condition, which assume to move over a vertical s...

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Main Authors: Mohd Kasim, Abdul Rahman, Aljabali, Ahlam, Arifin, Nur Syamilah, Ariffin, Noor Amalina Nisa, Ling, Dennis Chuan Ching, Waini, Iskandar, Zainal, Nurul Amira, Khashi’ie, Najiyah Safwa
Format: Article
Language:English
Published: MDPI 2022
Online Access:http://eprints.utem.edu.my/id/eprint/26290/2/ALJABALI2022%20MATHEMATICS-10-03111%20%281%29.PDF
http://eprints.utem.edu.my/id/eprint/26290/
https://www.mdpi.com/2227-7390/10/17/3111
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spelling my.utem.eprints.262902023-03-03T15:54:56Z http://eprints.utem.edu.my/id/eprint/26290/ Two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet Mohd Kasim, Abdul Rahman Aljabali, Ahlam Arifin, Nur Syamilah Ariffin, Noor Amalina Nisa Ling, Dennis Chuan Ching Waini, Iskandar Zainal, Nurul Amira Khashi’ie, Najiyah Safwa In this work, the mixed convection flow of non-Newtonian Eyring–Powell fluid with the effects of temperature dependent viscosity (TDV) were studied together with the interaction of dust particles under the influence of Newtonian Heating (NH) boundary condition, which assume to move over a vertical stretching sheet. Alternatively, the dusty fluid model was categorized as a two-phase flow that consists of phases of fluid and dust. Through the use of similarity transformations, governing equations of fluid and dust phases are reduced into ordinary differential equations (ODE), then solved by efficient numerical Keller–box method. Numerical solution and asymptotic results for limiting cases will be presented to investigate how the flow develops at the leading edge and its end behaviour. Comparison with the published outputs in literature evidence verified the precision of the present results. Graphical diagrams presenting velocity and temperature profiles (fluid and dust) were conversed for different influential parameters. The effects of skin friction and heat transfer rate were also evaluated. The discovery indicates that the presence of the dust particles have an effect on the fluid motion, which led to a deceleration in the fluid transference. The present flow model can match to the single phase fluid cases if the fluid particle interaction parameter is ignored. The fluid velocity and temperature distributions are always higher than dust particles, besides, the opposite trend between both phases is noticed with β. Meanwhile, both phases share the similar trend in conjunction with the rest factors. Almost all of the temperature profiles are not showing a significant change, since the viscosity of fluid is high, which can be perceived in the figures. Furthermore, the present study extends some theoretical knowledge of two-phase flow. MDPI 2022-08 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/26290/2/ALJABALI2022%20MATHEMATICS-10-03111%20%281%29.PDF Mohd Kasim, Abdul Rahman and Aljabali, Ahlam and Arifin, Nur Syamilah and Ariffin, Noor Amalina Nisa and Ling, Dennis Chuan Ching and Waini, Iskandar and Zainal, Nurul Amira and Khashi’ie, Najiyah Safwa (2022) Two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet. Mathematics, 10 (17). 01-16. ISSN 2227-7390 https://www.mdpi.com/2227-7390/10/17/3111 10.3390/math10173111
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description In this work, the mixed convection flow of non-Newtonian Eyring–Powell fluid with the effects of temperature dependent viscosity (TDV) were studied together with the interaction of dust particles under the influence of Newtonian Heating (NH) boundary condition, which assume to move over a vertical stretching sheet. Alternatively, the dusty fluid model was categorized as a two-phase flow that consists of phases of fluid and dust. Through the use of similarity transformations, governing equations of fluid and dust phases are reduced into ordinary differential equations (ODE), then solved by efficient numerical Keller–box method. Numerical solution and asymptotic results for limiting cases will be presented to investigate how the flow develops at the leading edge and its end behaviour. Comparison with the published outputs in literature evidence verified the precision of the present results. Graphical diagrams presenting velocity and temperature profiles (fluid and dust) were conversed for different influential parameters. The effects of skin friction and heat transfer rate were also evaluated. The discovery indicates that the presence of the dust particles have an effect on the fluid motion, which led to a deceleration in the fluid transference. The present flow model can match to the single phase fluid cases if the fluid particle interaction parameter is ignored. The fluid velocity and temperature distributions are always higher than dust particles, besides, the opposite trend between both phases is noticed with β. Meanwhile, both phases share the similar trend in conjunction with the rest factors. Almost all of the temperature profiles are not showing a significant change, since the viscosity of fluid is high, which can be perceived in the figures. Furthermore, the present study extends some theoretical knowledge of two-phase flow.
format Article
author Mohd Kasim, Abdul Rahman
Aljabali, Ahlam
Arifin, Nur Syamilah
Ariffin, Noor Amalina Nisa
Ling, Dennis Chuan Ching
Waini, Iskandar
Zainal, Nurul Amira
Khashi’ie, Najiyah Safwa
spellingShingle Mohd Kasim, Abdul Rahman
Aljabali, Ahlam
Arifin, Nur Syamilah
Ariffin, Noor Amalina Nisa
Ling, Dennis Chuan Ching
Waini, Iskandar
Zainal, Nurul Amira
Khashi’ie, Najiyah Safwa
Two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet
author_facet Mohd Kasim, Abdul Rahman
Aljabali, Ahlam
Arifin, Nur Syamilah
Ariffin, Noor Amalina Nisa
Ling, Dennis Chuan Ching
Waini, Iskandar
Zainal, Nurul Amira
Khashi’ie, Najiyah Safwa
author_sort Mohd Kasim, Abdul Rahman
title Two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet
title_short Two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet
title_full Two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet
title_fullStr Two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet
title_full_unstemmed Two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet
title_sort two-phase flow of eyring-powell fluid with temperature dependent viscosity over a vertical stretching sheet
publisher MDPI
publishDate 2022
url http://eprints.utem.edu.my/id/eprint/26290/2/ALJABALI2022%20MATHEMATICS-10-03111%20%281%29.PDF
http://eprints.utem.edu.my/id/eprint/26290/
https://www.mdpi.com/2227-7390/10/17/3111
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