Prediction of Thermal Distribution in an Internally Heated Radiative-Convective Moving Porous Fin with variable Thermal Conductivity using Homotopy Perturbation Method

Thermal distribution of a rectangular moving convective-radiative porous fin with temperature-dependent thermal conductivity and internal heat generation is analyzed in this work homotopy perturbation method. With the aid of the analytical solutions, the impacts of the model parameters on the therm...

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Main Authors: Suraju Aremu Oladosu, Rafiu Olalekan Kuku, Gbeminiyi Musibau Sobamowo, Antonio Marcos de Oliveira Siqueira
Format: Article
Language:English
Published: Universidade Federal de Viçosa (UFV) 2022-11-01
Series:The Journal of Engineering and Exact Sciences
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Online Access:https://periodicos.ufv.br/jcec/article/view/14923
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author Suraju Aremu Oladosu
Rafiu Olalekan Kuku
Gbeminiyi Musibau Sobamowo
Antonio Marcos de Oliveira Siqueira
author_facet Suraju Aremu Oladosu
Rafiu Olalekan Kuku
Gbeminiyi Musibau Sobamowo
Antonio Marcos de Oliveira Siqueira
author_sort Suraju Aremu Oladosu
collection DOAJ
description Thermal distribution of a rectangular moving convective-radiative porous fin with temperature-dependent thermal conductivity and internal heat generation is analyzed in this work homotopy perturbation method. With the aid of the analytical solutions, the impacts of the model parameters on the thermal behaviour of the fin are investigated.  The parametric analysis reveals that increase in porosity and convective parameters, the rate of heat transfer from the fin increases and consequently improves the efficiency of the fin. The values of the temperature distribution in the fin increase as the Peclet number increases. However, as thermal conductivity and internal heat generation increase, the rate of heat transfer from the fin decreases. Therefore, the operational parameters of the fin must be carefully selected to ensure that the fin retains its primary purpose of removing heat from the primary surface.
format Article
id doaj-art-03a569a84a954e70997e9cfae10c0838
institution Kabale University
issn 2527-1075
language English
publishDate 2022-11-01
publisher Universidade Federal de Viçosa (UFV)
record_format Article
series The Journal of Engineering and Exact Sciences
spelling doaj-art-03a569a84a954e70997e9cfae10c08382025-02-02T19:55:57ZengUniversidade Federal de Viçosa (UFV)The Journal of Engineering and Exact Sciences2527-10752022-11-018810.18540/jcecvl8iss8pp14923-01iPrediction of Thermal Distribution in an Internally Heated Radiative-Convective Moving Porous Fin with variable Thermal Conductivity using Homotopy Perturbation Method Suraju Aremu Oladosu0Rafiu Olalekan Kuku1Gbeminiyi Musibau Sobamowo2Antonio Marcos de Oliveira Siqueira3Lagos State University, Epe Campus, Lagos, Nigeria Lagos State University, Epe Campus, Lagos, Nigeria University of Lagos, Akoka Lagos, NigeriaFederal University of Viçosa, Brazil Thermal distribution of a rectangular moving convective-radiative porous fin with temperature-dependent thermal conductivity and internal heat generation is analyzed in this work homotopy perturbation method. With the aid of the analytical solutions, the impacts of the model parameters on the thermal behaviour of the fin are investigated.  The parametric analysis reveals that increase in porosity and convective parameters, the rate of heat transfer from the fin increases and consequently improves the efficiency of the fin. The values of the temperature distribution in the fin increase as the Peclet number increases. However, as thermal conductivity and internal heat generation increase, the rate of heat transfer from the fin decreases. Therefore, the operational parameters of the fin must be carefully selected to ensure that the fin retains its primary purpose of removing heat from the primary surface. https://periodicos.ufv.br/jcec/article/view/14923Thermal analysis; Porous Fin; Convective fin; Moving fin; Variable thermal conductivity; homotopy perturbation method.
spellingShingle Suraju Aremu Oladosu
Rafiu Olalekan Kuku
Gbeminiyi Musibau Sobamowo
Antonio Marcos de Oliveira Siqueira
Prediction of Thermal Distribution in an Internally Heated Radiative-Convective Moving Porous Fin with variable Thermal Conductivity using Homotopy Perturbation Method
The Journal of Engineering and Exact Sciences
Thermal analysis; Porous Fin; Convective fin; Moving fin; Variable thermal conductivity; homotopy perturbation method.
title Prediction of Thermal Distribution in an Internally Heated Radiative-Convective Moving Porous Fin with variable Thermal Conductivity using Homotopy Perturbation Method
title_full Prediction of Thermal Distribution in an Internally Heated Radiative-Convective Moving Porous Fin with variable Thermal Conductivity using Homotopy Perturbation Method
title_fullStr Prediction of Thermal Distribution in an Internally Heated Radiative-Convective Moving Porous Fin with variable Thermal Conductivity using Homotopy Perturbation Method
title_full_unstemmed Prediction of Thermal Distribution in an Internally Heated Radiative-Convective Moving Porous Fin with variable Thermal Conductivity using Homotopy Perturbation Method
title_short Prediction of Thermal Distribution in an Internally Heated Radiative-Convective Moving Porous Fin with variable Thermal Conductivity using Homotopy Perturbation Method
title_sort prediction of thermal distribution in an internally heated radiative convective moving porous fin with variable thermal conductivity using homotopy perturbation method
topic Thermal analysis; Porous Fin; Convective fin; Moving fin; Variable thermal conductivity; homotopy perturbation method.
url https://periodicos.ufv.br/jcec/article/view/14923
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AT gbeminiyimusibausobamowo predictionofthermaldistributioninaninternallyheatedradiativeconvectivemovingporousfinwithvariablethermalconductivityusinghomotopyperturbationmethod
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