Explicit Exact Solutions of Nonlinear Transient Thermal Models of a Porous Moving Fin using Laplace transform - Exp-function method
The present paper develops explicit and non-power series exact solutions to the nonlinear heat transfer models of conductive-radiative-convective moving-porous fin using Laplace transform - Exp-function method, is presented. The developed solutions are employed for investigation of the included par...
Saved in:
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Universidade Federal de Viçosa (UFV)
2023-09-01
|
Series: | The Journal of Engineering and Exact Sciences |
Subjects: | |
Online Access: | https://periodicos.ufv.br/jcec/article/view/15972 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
_version_ | 1832569734403457024 |
---|---|
author | Gbeminiyi Musibau Sobamowo Joy Nneka Ojuro Olutayo Onanuga Antonio Marcos de Oliveira Siqueira Júlio César Costa Campos |
author_facet | Gbeminiyi Musibau Sobamowo Joy Nneka Ojuro Olutayo Onanuga Antonio Marcos de Oliveira Siqueira Júlio César Costa Campos |
author_sort | Gbeminiyi Musibau Sobamowo |
collection | DOAJ |
description |
The present paper develops explicit and non-power series exact solutions to the nonlinear heat transfer models of conductive-radiative-convective moving-porous fin using Laplace transform - Exp-function method, is presented. The developed solutions are employed for investigation of the included parameters on the transient and steady states studies of the moving-porous fin. The results submitted that the fin temperature is augmented with time increase due to increase heat transfer rate as time progresses. However, thermal parameter of the fin reduces from the its base to its tip. As the porosity, moving, convective-conductive-radiative parameters are increased, the fin temperature are decreased due to increased heat transfer rate. The opposite trend is displayed for the conductive-radiative number. It can be stated that present work will be useful in the analysis of the device.
|
format | Article |
id | doaj-art-6e81fa92a14c48e6b02a8dbf8eb67426 |
institution | Kabale University |
issn | 2527-1075 |
language | English |
publishDate | 2023-09-01 |
publisher | Universidade Federal de Viçosa (UFV) |
record_format | Article |
series | The Journal of Engineering and Exact Sciences |
spelling | doaj-art-6e81fa92a14c48e6b02a8dbf8eb674262025-02-02T19:54:48ZengUniversidade Federal de Viçosa (UFV)The Journal of Engineering and Exact Sciences2527-10752023-09-0191010.18540/jcecvl9iss10pp15972-01eExplicit Exact Solutions of Nonlinear Transient Thermal Models of a Porous Moving Fin using Laplace transform - Exp-function methodGbeminiyi Musibau Sobamowo0Joy Nneka Ojuro1Olutayo Onanuga2Antonio Marcos de Oliveira Siqueira3Júlio César Costa Campos4Department of Mechanical Engineering, Faculty of Engineering, University of Lagos, Akoka, Lagos, NigeriaDepartment of Computer Science, University of Louisiana, Lafayette, USADepartment of Physics, Lagos State University of Science and Technology, Ikorodu, Lagos, USAChemical Engineering Graduate Program, Department of Chemistry, Federal University of Viçosa, BrazilUniversidade Federal de Viçosa, Brazil The present paper develops explicit and non-power series exact solutions to the nonlinear heat transfer models of conductive-radiative-convective moving-porous fin using Laplace transform - Exp-function method, is presented. The developed solutions are employed for investigation of the included parameters on the transient and steady states studies of the moving-porous fin. The results submitted that the fin temperature is augmented with time increase due to increase heat transfer rate as time progresses. However, thermal parameter of the fin reduces from the its base to its tip. As the porosity, moving, convective-conductive-radiative parameters are increased, the fin temperature are decreased due to increased heat transfer rate. The opposite trend is displayed for the conductive-radiative number. It can be stated that present work will be useful in the analysis of the device. https://periodicos.ufv.br/jcec/article/view/15972Porous fin. Thermal study. Explicit analytical solution. Laplace transform. Exp-function method. |
spellingShingle | Gbeminiyi Musibau Sobamowo Joy Nneka Ojuro Olutayo Onanuga Antonio Marcos de Oliveira Siqueira Júlio César Costa Campos Explicit Exact Solutions of Nonlinear Transient Thermal Models of a Porous Moving Fin using Laplace transform - Exp-function method The Journal of Engineering and Exact Sciences Porous fin. Thermal study. Explicit analytical solution. Laplace transform. Exp-function method. |
title | Explicit Exact Solutions of Nonlinear Transient Thermal Models of a Porous Moving Fin using Laplace transform - Exp-function method |
title_full | Explicit Exact Solutions of Nonlinear Transient Thermal Models of a Porous Moving Fin using Laplace transform - Exp-function method |
title_fullStr | Explicit Exact Solutions of Nonlinear Transient Thermal Models of a Porous Moving Fin using Laplace transform - Exp-function method |
title_full_unstemmed | Explicit Exact Solutions of Nonlinear Transient Thermal Models of a Porous Moving Fin using Laplace transform - Exp-function method |
title_short | Explicit Exact Solutions of Nonlinear Transient Thermal Models of a Porous Moving Fin using Laplace transform - Exp-function method |
title_sort | explicit exact solutions of nonlinear transient thermal models of a porous moving fin using laplace transform exp function method |
topic | Porous fin. Thermal study. Explicit analytical solution. Laplace transform. Exp-function method. |
url | https://periodicos.ufv.br/jcec/article/view/15972 |
work_keys_str_mv | AT gbeminiyimusibausobamowo explicitexactsolutionsofnonlineartransientthermalmodelsofaporousmovingfinusinglaplacetransformexpfunctionmethod AT joynnekaojuro explicitexactsolutionsofnonlineartransientthermalmodelsofaporousmovingfinusinglaplacetransformexpfunctionmethod AT olutayoonanuga explicitexactsolutionsofnonlineartransientthermalmodelsofaporousmovingfinusinglaplacetransformexpfunctionmethod AT antoniomarcosdeoliveirasiqueira explicitexactsolutionsofnonlineartransientthermalmodelsofaporousmovingfinusinglaplacetransformexpfunctionmethod AT juliocesarcostacampos explicitexactsolutionsofnonlineartransientthermalmodelsofaporousmovingfinusinglaplacetransformexpfunctionmethod |