In this study a simple and accurate semi-analytical method called Homotopy Perturbation Method (HPM) is used for solving nonlinear energy equation in a straight rectangular fin. The thermal conductivity and surface emissivity are considered as temperature dependent with some constant source of internal heat generation. The problem is solved for two main cases of thermo geometric fin parameter Nc = 1 and for Nc = 0.25. The results are presented for the temperature distribution, efficiency and optimum dimensionless parameters are effective and convenient for practical fins. Also it is found that this method can achieve more suitable results as compared to the other methods available in the literature
In the present work, various thermal parameters of an annular fin subjected to thermal loading are i...
Exact solutions for models describing heat transfer in a two-dimensional rectangular fin are constru...
In this study, analysis of heat transfer in a longitudinal rectangular fin with temperature-dependen...
AbstractIn this study a simple and accurate semi-analytical method called Homotopy Perturbation Meth...
In this paper, we present a reliable new algorithm based on the homotopy-perturbation method (HPM) t...
In this paper, a modifcation of the homotopy-perturbation method (HPM) is pre-sented to determine th...
In this Letter, the problem of determining the temperature distribution of a straight rectangular fi...
This work aimed at studying the effects of environmental temperature and surface emissivity paramete...
This paper applies J. H. He's homotopy perturbation method (HPM) to calculate the temperature distri...
AbstractThis work aimed at studying the effects of environmental temperature and surface emissivity ...
Radiating extended surfaces are usually utilized to enhance the heat transfer between primary surfac...
Abstract: For the better utilization of fin material, it is proposed a modified geometry of new fin ...
In this paper, an accurate approximate solutions for 2 problems arising in heat transfer straight fi...
This article presents the homotopy perturbation method (HPM) employed to investigate the effects of ...
Radiating extended surfaces are widely used to enhance heat transfer between primary surface and the...
In the present work, various thermal parameters of an annular fin subjected to thermal loading are i...
Exact solutions for models describing heat transfer in a two-dimensional rectangular fin are constru...
In this study, analysis of heat transfer in a longitudinal rectangular fin with temperature-dependen...
AbstractIn this study a simple and accurate semi-analytical method called Homotopy Perturbation Meth...
In this paper, we present a reliable new algorithm based on the homotopy-perturbation method (HPM) t...
In this paper, a modifcation of the homotopy-perturbation method (HPM) is pre-sented to determine th...
In this Letter, the problem of determining the temperature distribution of a straight rectangular fi...
This work aimed at studying the effects of environmental temperature and surface emissivity paramete...
This paper applies J. H. He's homotopy perturbation method (HPM) to calculate the temperature distri...
AbstractThis work aimed at studying the effects of environmental temperature and surface emissivity ...
Radiating extended surfaces are usually utilized to enhance the heat transfer between primary surfac...
Abstract: For the better utilization of fin material, it is proposed a modified geometry of new fin ...
In this paper, an accurate approximate solutions for 2 problems arising in heat transfer straight fi...
This article presents the homotopy perturbation method (HPM) employed to investigate the effects of ...
Radiating extended surfaces are widely used to enhance heat transfer between primary surface and the...
In the present work, various thermal parameters of an annular fin subjected to thermal loading are i...
Exact solutions for models describing heat transfer in a two-dimensional rectangular fin are constru...
In this study, analysis of heat transfer in a longitudinal rectangular fin with temperature-dependen...