AbstractRadiating extended surfaces are usually utilized to enhance the heat transfer between primary surface and the environment. In this paper, temperature distribution, fin efficiency, efficacy of convective straight fins with constant and temperature-dependent thermal conductivity are solved by implementing homotopy perturbation sumudu transform method (HPSTM). The proposed method is very useful and practical for solving the fractional order nonlinear diffusion equation, which is associated with variable thermal conductivity condition. A dimensionless analytical expression has been developed for fin effectiveness. The fin efficiency and the fin effectiveness have been attained as a function of thermo-geometric fin parameter. It can be n...
In the present work, various thermal parameters of an annular fin subjected to thermal loading are i...
Temperature distribution in a straight fin with variable thermal conductivity and a convecting tip w...
AbstractIn this paper, we studied the variation of temperature distribution, efficiency and effectiv...
Radiating extended surfaces are usually utilized to enhance the heat transfer between primary surfac...
AbstractIn this study a simple and accurate semi-analytical method called Homotopy Perturbation Meth...
The nonlinear fin problem with temperature-dependent thermal conductivity and heat transfer coeffici...
In this paper, thermal performance and optimum design analysis of straight fin with variable thermal...
AbstractIn this study, analysis of heat transfer in a longitudinal rectangular fin with temperature-...
Abstract In this letter, the approximate solution of nonlinear heat diffusion and heat transfer and ...
yesIn this paper, the Chebychev spectral collocation method is applied for the thermal analysis of ...
AbstractIn this study, a simple and highly accurate semi-analytical method called the Differential T...
AbstractThis work aimed at studying the effects of environmental temperature and surface emissivity ...
In this article, we propose and implement a numerical technique based on residue minimization to sol...
In this paper, the temperature distribution in a convective radial fins is analyzed through a fracti...
In this study a simple and accurate semi-analytical method called Homotopy Perturbation Method (HPM)...
In the present work, various thermal parameters of an annular fin subjected to thermal loading are i...
Temperature distribution in a straight fin with variable thermal conductivity and a convecting tip w...
AbstractIn this paper, we studied the variation of temperature distribution, efficiency and effectiv...
Radiating extended surfaces are usually utilized to enhance the heat transfer between primary surfac...
AbstractIn this study a simple and accurate semi-analytical method called Homotopy Perturbation Meth...
The nonlinear fin problem with temperature-dependent thermal conductivity and heat transfer coeffici...
In this paper, thermal performance and optimum design analysis of straight fin with variable thermal...
AbstractIn this study, analysis of heat transfer in a longitudinal rectangular fin with temperature-...
Abstract In this letter, the approximate solution of nonlinear heat diffusion and heat transfer and ...
yesIn this paper, the Chebychev spectral collocation method is applied for the thermal analysis of ...
AbstractIn this study, a simple and highly accurate semi-analytical method called the Differential T...
AbstractThis work aimed at studying the effects of environmental temperature and surface emissivity ...
In this article, we propose and implement a numerical technique based on residue minimization to sol...
In this paper, the temperature distribution in a convective radial fins is analyzed through a fracti...
In this study a simple and accurate semi-analytical method called Homotopy Perturbation Method (HPM)...
In the present work, various thermal parameters of an annular fin subjected to thermal loading are i...
Temperature distribution in a straight fin with variable thermal conductivity and a convecting tip w...
AbstractIn this paper, we studied the variation of temperature distribution, efficiency and effectiv...