z-logo
Premium
Thermal performance of straight porous fin with variable thermal conductivity under magnetic field and radiation effects
Author(s) -
Madhura K. R.,
Kalpana G.,
Makinde O. D.
Publication year - 2020
Publication title -
heat transfer
Language(s) - English
Resource type - Journals
eISSN - 2688-4542
pISSN - 2688-4534
DOI - 10.1002/htj.21864
Subject(s) - thermal conductivity , fin , heat transfer , nusselt number , mechanics , thermal radiation , materials science , porous medium , thermodynamics , magnetic field , physics , porosity , composite material , reynolds number , quantum mechanics , turbulence
The present numerical study reports the thermal performance of the straight porous fin with temperature‐dependent thermal conductivity, radiation, and magnetic field effects. The heat transfer model comprising the Darcy's law for simulating flow with solid‐fluid interactions in porous medium, Rosseland approximation for heat transfer through radiation, Maxwell equations for magnetic field effect and linearly varying temperature dependent thermal conductivity, results into highly nonlinear ordinary differential equation. The governing equation is solved using a finite difference scheme with suitable boundary conditions. The obtained solutions are physically interpreted by considering the impact of different nondimensional parameters on thermal performance, efficiency, and effectiveness of the system through plotted graphs. A detailed result with regard to the Nusselt number at the fin base is calculated. The results obtained are observed to be in excellent agreement with previous studies. From the study, it is observed that there is a significant effect on the thermal performance of the fin in the presence of porous constraints; also, results reveal that the nonlinear thermal conductivity parameter strengthens the thermal performance, efficiency, and effectiveness of the fin. Furthermore, the results of the study reveal that the rate of heat transfer of the fin increases with the increase in the magnetic parameter and radiation parameter.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here