Dual solutions of boundary-layer flow

This report is done by the author, and is dedicated to study on mixed convection flow over a vertical cylinder. The objective of the Final Year Project is to find out the effects of the curvature parameter γ and blowing parameter σ on the existence of dual solutions in an opposing flow (λ<0). Mat...

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Main Author: Yeo, Po Yuang.
Other Authors: Shu Jian Jun
Format: Final Year Project
Language:English
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/10356/49363
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-493632023-03-04T18:37:03Z Dual solutions of boundary-layer flow Yeo, Po Yuang. Shu Jian Jun School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering This report is done by the author, and is dedicated to study on mixed convection flow over a vertical cylinder. The objective of the Final Year Project is to find out the effects of the curvature parameter γ and blowing parameter σ on the existence of dual solutions in an opposing flow (λ<0). Matlab is used to model the problem. Before the A/P Shu’s problem is modeled, the accuracy of the Matlab codes written and proposed by the author was verified against a study done by J H Merkin[12]. Once the codes were found to be robust and accurate, the Matlab codes were modified for A/P Shu’s problem. Simulation results show that unique and dual solution existed in an opposing flow. The effect of the curvature parameter is that as γ increases, the range of dual solution increases. The range of unique and dual solution decrease up to a point ? ? ?, where no solutions can be found. The effect of the blowing parameter is also investigated. Simulation results show that as σ increases, the range of dual solutions decreases, up till point ? ? ?, where dual solution cease to exist. The corresponding velocity and temperature profiles were also analysed. Bachelor of Engineering (Mechanical Engineering) 2012-05-18T01:24:57Z 2012-05-18T01:24:57Z 2012 2012 Final Year Project (FYP) http://hdl.handle.net/10356/49363 en Nanyang Technological University 129 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering
spellingShingle DRNTU::Engineering::Mechanical engineering
Yeo, Po Yuang.
Dual solutions of boundary-layer flow
description This report is done by the author, and is dedicated to study on mixed convection flow over a vertical cylinder. The objective of the Final Year Project is to find out the effects of the curvature parameter γ and blowing parameter σ on the existence of dual solutions in an opposing flow (λ<0). Matlab is used to model the problem. Before the A/P Shu’s problem is modeled, the accuracy of the Matlab codes written and proposed by the author was verified against a study done by J H Merkin[12]. Once the codes were found to be robust and accurate, the Matlab codes were modified for A/P Shu’s problem. Simulation results show that unique and dual solution existed in an opposing flow. The effect of the curvature parameter is that as γ increases, the range of dual solution increases. The range of unique and dual solution decrease up to a point ? ? ?, where no solutions can be found. The effect of the blowing parameter is also investigated. Simulation results show that as σ increases, the range of dual solutions decreases, up till point ? ? ?, where dual solution cease to exist. The corresponding velocity and temperature profiles were also analysed.
author2 Shu Jian Jun
author_facet Shu Jian Jun
Yeo, Po Yuang.
format Final Year Project
author Yeo, Po Yuang.
author_sort Yeo, Po Yuang.
title Dual solutions of boundary-layer flow
title_short Dual solutions of boundary-layer flow
title_full Dual solutions of boundary-layer flow
title_fullStr Dual solutions of boundary-layer flow
title_full_unstemmed Dual solutions of boundary-layer flow
title_sort dual solutions of boundary-layer flow
publishDate 2012
url http://hdl.handle.net/10356/49363
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