TY - JOUR
T1 - Analytical solution for temperature equation of a fin problem with variable temperature-dependent thermal properties
T2 - Application of LSM and DTM-Pade approximant
AU - Alhejaili, Weaam
AU - Varun Kumar, R. S.
AU - El-Zahar, Essam Roshdy
AU - Sowmya, G.
AU - Prasannakumara, B. C.
AU - Ijaz Khan, M.
AU - Yogeesha, K. M.
AU - Qayyum, Sumaira
N1 - Publisher Copyright:
© 2022
PY - 2022/4/16
Y1 - 2022/4/16
N2 - Temperature variation through a longitudinal fin with linear and nonlinear temperature-dependent thermal conductivities and heat transfer coefficient, subject to radiative heat flux and convective heat transport is explained in the present examination. For the radiative heat flux, the Rosseland approximation is incorporated and convection mode of energy transmission is accounted on the fin's surface. The associated physical problem is developed in such a manner that the steady-state heat transmission problem is governed with the help of dimensionless variables signified by a second order differential equation (ODE). To solve this equation, an analytical approach, DTM-Pade, and the LSM are implemented. Moreover, the consequence of a few non-dimensional factors on the temperature field are depicted graphically. The investigation's main findings illustrate that a significant decline in the thermal field is caused by an increment in the convection and the radiation mechanism. The internal development of heat affects the thermal distribution in the fin.
AB - Temperature variation through a longitudinal fin with linear and nonlinear temperature-dependent thermal conductivities and heat transfer coefficient, subject to radiative heat flux and convective heat transport is explained in the present examination. For the radiative heat flux, the Rosseland approximation is incorporated and convection mode of energy transmission is accounted on the fin's surface. The associated physical problem is developed in such a manner that the steady-state heat transmission problem is governed with the help of dimensionless variables signified by a second order differential equation (ODE). To solve this equation, an analytical approach, DTM-Pade, and the LSM are implemented. Moreover, the consequence of a few non-dimensional factors on the temperature field are depicted graphically. The investigation's main findings illustrate that a significant decline in the thermal field is caused by an increment in the convection and the radiation mechanism. The internal development of heat affects the thermal distribution in the fin.
KW - DTM-Pade approximant
KW - Heat transfer
KW - Least square method
KW - Longitudinal fin
UR - https://www.scopus.com/pages/publications/85124125159
U2 - 10.1016/j.cplett.2022.139409
DO - 10.1016/j.cplett.2022.139409
M3 - Article
AN - SCOPUS:85124125159
SN - 0009-2614
VL - 793
JO - Chemical Physics Letters
JF - Chemical Physics Letters
M1 - 139409
ER -