An overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model

The present study investigates the axisymmetric stagnation point radiative flow of a Cu-Al 2 O 3 /water hybrid nanofluid over a radially stretched/shrunk disk. In this paper, a new mathematical model has been developed by taking into consideration the concept of different nanoparticles concentration...

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Main Authors: Khan, Amir Yaseen, Mkhatshwa, Musawenkhosi Patson, Mondal, Sabyasachi, Khumalo, Melusi, Noor, Noor Fadiya Mohd
Format: Article
Published: KeAi Publishing 2024
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Online Access:http://eprints.um.edu.my/45513/
https://doi.org/10.1016/j.jppr.2023.12.001
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spelling my.um.eprints.455132024-10-25T08:02:32Z http://eprints.um.edu.my/45513/ An overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model Khan, Amir Yaseen Mkhatshwa, Musawenkhosi Patson Mondal, Sabyasachi Khumalo, Melusi Noor, Noor Fadiya Mohd QA Mathematics The present study investigates the axisymmetric stagnation point radiative flow of a Cu-Al 2 O 3 /water hybrid nanofluid over a radially stretched/shrunk disk. In this paper, a new mathematical model has been developed by taking into consideration the concept of different nanoparticles concentration in a hybrid nanofluid, which are Brownian motion and thermophoresis of nanoparticles. A new model for entropy generation has also been provided in the present study. The non -dimensional governing equations of the developed mathematical model are solved using newly developed and efficient overlapping grid spectral collocation method. Numerical stability and residual error test are provided here to show the accuracy of the numerical method in this mathematical model. The outcomes of fluid flow, temperature, and two different types of concentration profiles are depicted, and described in graphical and tabular forms. For the limiting instances, comparison shows excellent agreement among current and results established in the literature. Increasing the strength of magnetic field is seen to increase the radial component of fluid velocity as well as the entropy generated within the system. Two different nanofluid concentration profiles are increasing and decreasing with rising thermophoresis and Brownian motion parameters, respectively, from a particular height above the disk because of the revised nanofluid boundary condition. Temperature profile increases here with increasing Biot number, and increasing Brinkman number causes higher entropy generation number for both stretching and shrinking disks. The enhanced thermal characteristics of the hybrid nanofluid over the single particle nanofluid has been observed. <feminine ordinal indicator> 2024 The Authors. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd. This is an open access article under the CC BY -NC -ND license (http://creativecommons.org/licenses/bync-nd/4.0/). KeAi Publishing 2024-03 Article PeerReviewed Khan, Amir Yaseen and Mkhatshwa, Musawenkhosi Patson and Mondal, Sabyasachi and Khumalo, Melusi and Noor, Noor Fadiya Mohd (2024) An overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model. Propulsion and Power Research, 13 (1). pp. 98-117. ISSN 2212-540X, DOI https://doi.org/10.1016/j.jppr.2023.12.001 <https://doi.org/10.1016/j.jppr.2023.12.001>. https://doi.org/10.1016/j.jppr.2023.12.001 10.1016/j.jppr.2023.12.001
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QA Mathematics
spellingShingle QA Mathematics
Khan, Amir Yaseen
Mkhatshwa, Musawenkhosi Patson
Mondal, Sabyasachi
Khumalo, Melusi
Noor, Noor Fadiya Mohd
An overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model
description The present study investigates the axisymmetric stagnation point radiative flow of a Cu-Al 2 O 3 /water hybrid nanofluid over a radially stretched/shrunk disk. In this paper, a new mathematical model has been developed by taking into consideration the concept of different nanoparticles concentration in a hybrid nanofluid, which are Brownian motion and thermophoresis of nanoparticles. A new model for entropy generation has also been provided in the present study. The non -dimensional governing equations of the developed mathematical model are solved using newly developed and efficient overlapping grid spectral collocation method. Numerical stability and residual error test are provided here to show the accuracy of the numerical method in this mathematical model. The outcomes of fluid flow, temperature, and two different types of concentration profiles are depicted, and described in graphical and tabular forms. For the limiting instances, comparison shows excellent agreement among current and results established in the literature. Increasing the strength of magnetic field is seen to increase the radial component of fluid velocity as well as the entropy generated within the system. Two different nanofluid concentration profiles are increasing and decreasing with rising thermophoresis and Brownian motion parameters, respectively, from a particular height above the disk because of the revised nanofluid boundary condition. Temperature profile increases here with increasing Biot number, and increasing Brinkman number causes higher entropy generation number for both stretching and shrinking disks. The enhanced thermal characteristics of the hybrid nanofluid over the single particle nanofluid has been observed. <feminine ordinal indicator> 2024 The Authors. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd. This is an open access article under the CC BY -NC -ND license (http://creativecommons.org/licenses/bync-nd/4.0/).
format Article
author Khan, Amir Yaseen
Mkhatshwa, Musawenkhosi Patson
Mondal, Sabyasachi
Khumalo, Melusi
Noor, Noor Fadiya Mohd
author_facet Khan, Amir Yaseen
Mkhatshwa, Musawenkhosi Patson
Mondal, Sabyasachi
Khumalo, Melusi
Noor, Noor Fadiya Mohd
author_sort Khan, Amir Yaseen
title An overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model
title_short An overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model
title_full An overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model
title_fullStr An overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model
title_full_unstemmed An overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model
title_sort overlapping grid spectral collocation analysis on a newly developed hybrid nano fl uid fl ow model
publisher KeAi Publishing
publishDate 2024
url http://eprints.um.edu.my/45513/
https://doi.org/10.1016/j.jppr.2023.12.001
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score 13.211869