Haar Wavelet Collocation Method for Thermal Analysis of Porous Fin with Temperature-dependent Thermal Conductivity and Internal Heat Generation

In this study, the thermal performance analysis of porous fin with temperature-dependent thermal conductivity and internal heat generation is carried out using Haar wavelet collocation method. The effects of various parameters on the thermal characteristics of the porous fin are investigated. It is...

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Main Authors: George OGUNTALA, Raed Abd-Alhameed
Format: Article
Language:English
Published: Shahid Chamran University of Ahvaz 2017-08-01
Series:Journal of Applied and Computational Mechanics
Subjects:
Online Access:http://jacm.scu.ac.ir/article_12702_3877b7b88990b52f3dd7f64070c29b67.pdf
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author George OGUNTALA
Raed Abd-Alhameed
author_facet George OGUNTALA
Raed Abd-Alhameed
author_sort George OGUNTALA
collection DOAJ
description In this study, the thermal performance analysis of porous fin with temperature-dependent thermal conductivity and internal heat generation is carried out using Haar wavelet collocation method. The effects of various parameters on the thermal characteristics of the porous fin are investigated. It is found that as the porosity increases, the rate of heat transfer from the fin increases and the thermal performance of the porous fin increases. The numerical solutions by the Haar wavelet collocation method are in good agreement with the standard numerical solutions.
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spelling doaj.art-127d30de71b64c9c8482bf455b561de62022-12-22T03:55:06ZengShahid Chamran University of AhvazJournal of Applied and Computational Mechanics2383-45362383-45362017-08-013318519110.22055/jacm.2017.21494.110312702Haar Wavelet Collocation Method for Thermal Analysis of Porous Fin with Temperature-dependent Thermal Conductivity and Internal Heat GenerationGeorge OGUNTALA0Raed Abd-Alhameed1Faculty of Engineering and Informatics University of Bradford, BD7 1DP West Yorkshire, UKSchool of Electrical Engineering and Computer Science, Faculty of Engineering and Informatics University of Bradford West Yorkshire, UKIn this study, the thermal performance analysis of porous fin with temperature-dependent thermal conductivity and internal heat generation is carried out using Haar wavelet collocation method. The effects of various parameters on the thermal characteristics of the porous fin are investigated. It is found that as the porosity increases, the rate of heat transfer from the fin increases and the thermal performance of the porous fin increases. The numerical solutions by the Haar wavelet collocation method are in good agreement with the standard numerical solutions.http://jacm.scu.ac.ir/article_12702_3877b7b88990b52f3dd7f64070c29b67.pdfHaar wavelet methodPorous FinThermal AnalysisTemperature-Dependent Thermal Conductivity and Internal Heat Generation
spellingShingle George OGUNTALA
Raed Abd-Alhameed
Haar Wavelet Collocation Method for Thermal Analysis of Porous Fin with Temperature-dependent Thermal Conductivity and Internal Heat Generation
Journal of Applied and Computational Mechanics
Haar wavelet method
Porous Fin
Thermal Analysis
Temperature-Dependent Thermal Conductivity and Internal Heat Generation
title Haar Wavelet Collocation Method for Thermal Analysis of Porous Fin with Temperature-dependent Thermal Conductivity and Internal Heat Generation
title_full Haar Wavelet Collocation Method for Thermal Analysis of Porous Fin with Temperature-dependent Thermal Conductivity and Internal Heat Generation
title_fullStr Haar Wavelet Collocation Method for Thermal Analysis of Porous Fin with Temperature-dependent Thermal Conductivity and Internal Heat Generation
title_full_unstemmed Haar Wavelet Collocation Method for Thermal Analysis of Porous Fin with Temperature-dependent Thermal Conductivity and Internal Heat Generation
title_short Haar Wavelet Collocation Method for Thermal Analysis of Porous Fin with Temperature-dependent Thermal Conductivity and Internal Heat Generation
title_sort haar wavelet collocation method for thermal analysis of porous fin with temperature dependent thermal conductivity and internal heat generation
topic Haar wavelet method
Porous Fin
Thermal Analysis
Temperature-Dependent Thermal Conductivity and Internal Heat Generation
url http://jacm.scu.ac.ir/article_12702_3877b7b88990b52f3dd7f64070c29b67.pdf
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