CONDUCTION OF HEAT IN A SEMIINFINITE SOLID WITH AN EXPONENTIAL-TYPE INITIAL TEMPERATURE PROFILE - TEMPERATURE AND HEAT-FLUX SOLUTIONS DUE TO AN INSTANTANEOUS LASER SOURCE
Ma. Chaudhry et Sm. Zubair, CONDUCTION OF HEAT IN A SEMIINFINITE SOLID WITH AN EXPONENTIAL-TYPE INITIAL TEMPERATURE PROFILE - TEMPERATURE AND HEAT-FLUX SOLUTIONS DUE TO AN INSTANTANEOUS LASER SOURCE, Warme- und Stoffubertragung, 30(1), 1994, pp. 41-46
A closed-form model for the computation of temperature and heal-flux d
istribution in a semi-infinite solid with an exponentially-decaying, i
nitial-temperature profile is investigated. The solutions are presente
d for the case of an instantaneous laser source which is absorbed part
ially in the surface layers followed by an exponential decay with posi
tion in the material itself. The appropriate dimensionless parameters
are identified and the reduced temperature and heat flux solutions are
presented in the graphic form as a function of these parameters. Some
limiting cases of practical interest are also discussed. It is demons
trated that the present analysis covers the classical case of no heat
generation in the solid as well as some new solutions.