Free convection heat transfer along a variable wall temperature vertical cylinder

This report serves as a numerical analysis and literature review for free convection heat transfer along a cylinder, which is vertical and possessing a wall temperature, proportional to xn. x is the distance measured from cylinder’s base or its leading edge, and nx is a constant. J.J. Shu and I. Pop...

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Main Author: Abdul Sufi Noordin
Other Authors: Shu Jian Jun
Format: Final Year Project
Language:English
Published: 2015
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Online Access:http://hdl.handle.net/10356/64562
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-645622023-03-04T18:31:21Z Free convection heat transfer along a variable wall temperature vertical cylinder Abdul Sufi Noordin Shu Jian Jun School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering This report serves as a numerical analysis and literature review for free convection heat transfer along a cylinder, which is vertical and possessing a wall temperature, proportional to xn. x is the distance measured from cylinder’s base or its leading edge, and nx is a constant. J.J. Shu and I. Pop were the first to discuss and model the governing equations. Thus, this reports serves as a continuation to their study. Numerous studies with different parameters were conducted to analyze free convection along an upright cylinder, which is isothermal, as well as one, which has a variable surface temperature. However, none presented a direct comparison of the effect of these two different surface conditions. Thus, this paper will present and compare this difference. Firstly, extensive research on previous work in relation with the study were done and analyzed. Following that, a detailed analysis on the numerical solutions was constructed and presented. The numerical computations will be obtained with the implementation of ‘MATLAB’, a multi-paradigm numerical computing environment. Solutions, including the temperature and velocity profile plots, together with the rate of heat transfer plot, will be presented at both the base of the cylinder, which has the stretched stream wise coordinate xi=0, and the asymptotically solution far downstream, where xi → ∞. In addition, the effect of parameters such as n and Prandtl number, Pr, will be studied. Finally, a conclusion will be drawn regarding the significance of these parameters and the relevancy of the governing equation. Bachelor of Engineering (Mechanical Engineering) 2015-05-28T04:54:26Z 2015-05-28T04:54:26Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/64562 en Nanyang Technological University 93 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
Abdul Sufi Noordin
Free convection heat transfer along a variable wall temperature vertical cylinder
description This report serves as a numerical analysis and literature review for free convection heat transfer along a cylinder, which is vertical and possessing a wall temperature, proportional to xn. x is the distance measured from cylinder’s base or its leading edge, and nx is a constant. J.J. Shu and I. Pop were the first to discuss and model the governing equations. Thus, this reports serves as a continuation to their study. Numerous studies with different parameters were conducted to analyze free convection along an upright cylinder, which is isothermal, as well as one, which has a variable surface temperature. However, none presented a direct comparison of the effect of these two different surface conditions. Thus, this paper will present and compare this difference. Firstly, extensive research on previous work in relation with the study were done and analyzed. Following that, a detailed analysis on the numerical solutions was constructed and presented. The numerical computations will be obtained with the implementation of ‘MATLAB’, a multi-paradigm numerical computing environment. Solutions, including the temperature and velocity profile plots, together with the rate of heat transfer plot, will be presented at both the base of the cylinder, which has the stretched stream wise coordinate xi=0, and the asymptotically solution far downstream, where xi → ∞. In addition, the effect of parameters such as n and Prandtl number, Pr, will be studied. Finally, a conclusion will be drawn regarding the significance of these parameters and the relevancy of the governing equation.
author2 Shu Jian Jun
author_facet Shu Jian Jun
Abdul Sufi Noordin
format Final Year Project
author Abdul Sufi Noordin
author_sort Abdul Sufi Noordin
title Free convection heat transfer along a variable wall temperature vertical cylinder
title_short Free convection heat transfer along a variable wall temperature vertical cylinder
title_full Free convection heat transfer along a variable wall temperature vertical cylinder
title_fullStr Free convection heat transfer along a variable wall temperature vertical cylinder
title_full_unstemmed Free convection heat transfer along a variable wall temperature vertical cylinder
title_sort free convection heat transfer along a variable wall temperature vertical cylinder
publishDate 2015
url http://hdl.handle.net/10356/64562
_version_ 1759853005229785088