Numerical solution of Williamson hybrid ferrofluid over a stretching sheet / Puteri Ereena Shafira Mustafa

Non-Newtonian Williamson hybrid ferrofluid has become the topic of interest among researchers due to the shear thinning properties that can represent real life application such as medical industry. Hybrid ferrofluid are also considered because of higher heat transfer rather than single domain ferrof...

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Main Author: Mustafa, Puteri Ereena Shafira
Format: Thesis
Language:English
Published: 2023
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Online Access:https://ir.uitm.edu.my/id/eprint/97869/1/97869.pdf
https://ir.uitm.edu.my/id/eprint/97869/
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spelling my.uitm.ir.978692024-07-27T17:51:38Z https://ir.uitm.edu.my/id/eprint/97869/ Numerical solution of Williamson hybrid ferrofluid over a stretching sheet / Puteri Ereena Shafira Mustafa Mustafa, Puteri Ereena Shafira Difference equations. Functional equations. Delay differential equations. Integral equations Non-Newtonian Williamson hybrid ferrofluid has become the topic of interest among researchers due to the shear thinning properties that can represent real life application such as medical industry. Hybrid ferrofluid are also considered because of higher heat transfer rather than single domain ferrofluid. This research aims to discover the flow of non-Newtonian Williamson hybrid ferrofluid along the stretching sheet. Partial differential equations (PDEs) are transformed into ordinary differential equations (ODEs) by using similarity transform variable. The transformed ODEs are solved numerically by using mathematical algorithm encoded in Maple software. The effect of velocity and temperature profiles are discussed for several parameters such as magnetic parameter, stretching parameter, non-Newtonian Williamson fluid parameter, Prandtl number, and local Eckert number are also discussed. The values of skin friction coefficient are summarized and compared with earlier published research articles to authenticate the obtained numerical algorithm. It is discovered that the velocity profile increases as the value of magnetic and stretching parameter are increased. On the other hand, the temperature profile increases because of the increase in magnetite and copper nanoparticles volume fraction, stretching parameter, non-Newtonian fluid parameter and Eckert number. 2023 Thesis NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/97869/1/97869.pdf Numerical solution of Williamson hybrid ferrofluid over a stretching sheet / Puteri Ereena Shafira Mustafa. (2023) Degree thesis, thesis, Universiti Teknologi MARA, Terengganu.
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Difference equations. Functional equations. Delay differential equations. Integral equations
spellingShingle Difference equations. Functional equations. Delay differential equations. Integral equations
Mustafa, Puteri Ereena Shafira
Numerical solution of Williamson hybrid ferrofluid over a stretching sheet / Puteri Ereena Shafira Mustafa
description Non-Newtonian Williamson hybrid ferrofluid has become the topic of interest among researchers due to the shear thinning properties that can represent real life application such as medical industry. Hybrid ferrofluid are also considered because of higher heat transfer rather than single domain ferrofluid. This research aims to discover the flow of non-Newtonian Williamson hybrid ferrofluid along the stretching sheet. Partial differential equations (PDEs) are transformed into ordinary differential equations (ODEs) by using similarity transform variable. The transformed ODEs are solved numerically by using mathematical algorithm encoded in Maple software. The effect of velocity and temperature profiles are discussed for several parameters such as magnetic parameter, stretching parameter, non-Newtonian Williamson fluid parameter, Prandtl number, and local Eckert number are also discussed. The values of skin friction coefficient are summarized and compared with earlier published research articles to authenticate the obtained numerical algorithm. It is discovered that the velocity profile increases as the value of magnetic and stretching parameter are increased. On the other hand, the temperature profile increases because of the increase in magnetite and copper nanoparticles volume fraction, stretching parameter, non-Newtonian fluid parameter and Eckert number.
format Thesis
author Mustafa, Puteri Ereena Shafira
author_facet Mustafa, Puteri Ereena Shafira
author_sort Mustafa, Puteri Ereena Shafira
title Numerical solution of Williamson hybrid ferrofluid over a stretching sheet / Puteri Ereena Shafira Mustafa
title_short Numerical solution of Williamson hybrid ferrofluid over a stretching sheet / Puteri Ereena Shafira Mustafa
title_full Numerical solution of Williamson hybrid ferrofluid over a stretching sheet / Puteri Ereena Shafira Mustafa
title_fullStr Numerical solution of Williamson hybrid ferrofluid over a stretching sheet / Puteri Ereena Shafira Mustafa
title_full_unstemmed Numerical solution of Williamson hybrid ferrofluid over a stretching sheet / Puteri Ereena Shafira Mustafa
title_sort numerical solution of williamson hybrid ferrofluid over a stretching sheet / puteri ereena shafira mustafa
publishDate 2023
url https://ir.uitm.edu.my/id/eprint/97869/1/97869.pdf
https://ir.uitm.edu.my/id/eprint/97869/
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score 13.211869