TY - JOUR
T1 - Thermal analysis of the convective-radiative fin with a step change in thickness and temperature dependent thermal conductivity
AU - Torabi, Mohsen
AU - Yaghoobi, Hessameddin
AU - Kiani, Mohammad Reza
PY - 2013
Y1 - 2013
N2 - This paper provides heat transfer analysis in a straight fin with a step change in thick- ness and variable thermal conductivity, which is losing heat by simultaneous convection and radiation. The calculations are carried out by using the differential transformation me- Thod (DTM) that can be applied to various types of differential equations. The results obtained employing DTM are compared with an accurate numerical solution to verify the accuracy of the proposed method. Several graphs are provided to illustrate how the tem- perature distribution is affected by the (i) thickness parameter, (ii) dimensionless fin semi thickness, (iii) length ratio, (iv) thermal conductivity parameter, (vi) Biot's number, and (vii) radiation-conduction parameter. This collection of graphs provides a comprehensive picture of the thermal performance of the system under steady state conditions. Key words: Step straight fin, simultaneous convection and radiation, temperature dependent thermal conductivity, DTM analytical technique.
AB - This paper provides heat transfer analysis in a straight fin with a step change in thick- ness and variable thermal conductivity, which is losing heat by simultaneous convection and radiation. The calculations are carried out by using the differential transformation me- Thod (DTM) that can be applied to various types of differential equations. The results obtained employing DTM are compared with an accurate numerical solution to verify the accuracy of the proposed method. Several graphs are provided to illustrate how the tem- perature distribution is affected by the (i) thickness parameter, (ii) dimensionless fin semi thickness, (iii) length ratio, (iv) thermal conductivity parameter, (vi) Biot's number, and (vii) radiation-conduction parameter. This collection of graphs provides a comprehensive picture of the thermal performance of the system under steady state conditions. Key words: Step straight fin, simultaneous convection and radiation, temperature dependent thermal conductivity, DTM analytical technique.
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M3 - Article
AN - SCOPUS:84908473176
SN - 1429-2955
VL - 51
SP - 593
EP - 602
JO - Journal of Theoretical and Applied Mechanics
JF - Journal of Theoretical and Applied Mechanics
IS - 3
ER -