Dissipation effects with natural convection flow over a non-isothemal vertical cone

In this study, the effect of dissipation fully developed heat transfer by natural convection flow over a non-isothermal vertical cone is investigated. The governing equation consists of continuity, energy and momentum equations were derived. The purpose of the study is to investigate numerically the...

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Main Author: Abdul Khalid, Fasha Farhanni
Format: Thesis
Language:English
Published: 2019
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Online Access:http://eprints.utm.my/id/eprint/102175/1/FashafFarhanniMFS2019.pdf.pdf
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spelling my-utm-ep.1021752023-08-07T08:27:14Z Dissipation effects with natural convection flow over a non-isothemal vertical cone 2019 Abdul Khalid, Fasha Farhanni QA Mathematics In this study, the effect of dissipation fully developed heat transfer by natural convection flow over a non-isothermal vertical cone is investigated. The governing equation consists of continuity, energy and momentum equations were derived. The purpose of the study is to investigate numerically the mathematical model describing the nature of natural convection flow over a vertical cone. The numerical result is obtained by using the Crank Nicolson method. This method is used due to the scheme is unconditionally stable and more accurate. The discretization equations were computed and numerical results were plotted using MATLAB software. The behaviour of velocity, temperature, skin friction and Nusselt number influenced by Prandtl numbers, viscous dissipation parameter as well as separation times of the flow were analyzed. Results showed that the behaviour of velocity and temperature profiles changed for every distinct values of Prandtl numbers, viscous dissipation parameter as well as separation time. 2019 Thesis http://eprints.utm.my/id/eprint/102175/ http://eprints.utm.my/id/eprint/102175/1/FashafFarhanniMFS2019.pdf.pdf application/pdf en public http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:146273 masters Universiti Teknologi Malaysia Faculty of Science
institution Universiti Teknologi Malaysia
collection UTM Institutional Repository
language English
topic QA Mathematics
spellingShingle QA Mathematics
Abdul Khalid, Fasha Farhanni
Dissipation effects with natural convection flow over a non-isothemal vertical cone
description In this study, the effect of dissipation fully developed heat transfer by natural convection flow over a non-isothermal vertical cone is investigated. The governing equation consists of continuity, energy and momentum equations were derived. The purpose of the study is to investigate numerically the mathematical model describing the nature of natural convection flow over a vertical cone. The numerical result is obtained by using the Crank Nicolson method. This method is used due to the scheme is unconditionally stable and more accurate. The discretization equations were computed and numerical results were plotted using MATLAB software. The behaviour of velocity, temperature, skin friction and Nusselt number influenced by Prandtl numbers, viscous dissipation parameter as well as separation times of the flow were analyzed. Results showed that the behaviour of velocity and temperature profiles changed for every distinct values of Prandtl numbers, viscous dissipation parameter as well as separation time.
format Thesis
qualification_level Master's degree
author Abdul Khalid, Fasha Farhanni
author_facet Abdul Khalid, Fasha Farhanni
author_sort Abdul Khalid, Fasha Farhanni
title Dissipation effects with natural convection flow over a non-isothemal vertical cone
title_short Dissipation effects with natural convection flow over a non-isothemal vertical cone
title_full Dissipation effects with natural convection flow over a non-isothemal vertical cone
title_fullStr Dissipation effects with natural convection flow over a non-isothemal vertical cone
title_full_unstemmed Dissipation effects with natural convection flow over a non-isothemal vertical cone
title_sort dissipation effects with natural convection flow over a non-isothemal vertical cone
granting_institution Universiti Teknologi Malaysia
granting_department Faculty of Science
publishDate 2019
url http://eprints.utm.my/id/eprint/102175/1/FashafFarhanniMFS2019.pdf.pdf
_version_ 1776100863761186816