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Analytical solution to convection-radiation of a continuously moving fin with temperature-dependent thermal conductivity
Author(s) -
Amir Moradi,
Reza Rafiee
Publication year - 2012
Publication title -
thermal science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.339
H-Index - 43
eISSN - 2334-7163
pISSN - 0354-9836
DOI - 10.2298/tsci110425005m
Subject(s) - fin , thermal conduction , mechanics , convection , thermodynamics , exponential function , materials science , heat transfer , thermal conductivity , annular fin , thermal radiation , radiation , péclet number , heat transfer coefficient , physics , mathematical analysis , optics , mathematics , composite material
In this article, the simultaneous convection-radiation heat transfer of a moving fin of variable thermal conductivity is studied. The differential transformation method (DTM) is applied for an analytic solution for heat transfer in fin with two different profiles. Fin profiles are rectangular and exponential. The accuracy of analytic solution is validated by comparing it with the numerical solution that is obtained by fourth-order Runge-Kutta method. The analytical and numerical results are shown for different values of the embedding parameters. DTM results show that series converge rapidly with high accuracy. The results indicate that the fin tip temperature increases when ambient temperature increases. Conversely, the fin tip temperature decreases with an increase in the Peclet number, convection-conduction and radiation-conduction parameters. It is shown that the fin tip temperature of the exponential profile is higher than the rectangular one. The results indicate that the numerical data and analytical method are in a good agreement with each other

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