The application of new methods to solution of non-Fourier heat transfer problems has always been one of the interesting topics among thermal science researchers. In this paper, the effect of laser, as a heat source, on a thin film was studied. The Dual Phase Lagging (DPL) non-Fourier heat conduction model was used for thermal analysis. The thermal conductivity was assumed temperature-dependent which resulted in a nonlinear equation. The obtained equations were solved using the approximate-analytical Adomian Decomposition Method (ADM). It was concluded that the nonlinear analysis is important in non-Fourier heat conduction problems. Significant differences were observed between the Fourier and non-Fourier solutions which stress the importanc...
In the present work, we investigate laser heating of nanoscale thin-films irradiated in three dimens...
In the paper the different variants of the dual phase lag equation (DPLE) are considered. As one kno...
In the present work, we investigate laser heating of nanoscale thin-films irradiated in three dimens...
AbstractThe application of new methods to solution of non-Fourier heat transfer problems has always ...
The application of new methods to solution of non-Fourier heat transfer problems has always been one...
Heat transfer processes occurring in the micro-domains can be described using the dual-phase lag equ...
A dynamic thermal conduction problem needs a mathematical formulation and solution consisting of cyl...
The energy equation corresponding to the dual phase lag model (DPLM) results from the generalized fo...
The energy equation corresponding to the dual phase lag model (DPLM) results from the generalized fo...
Abstract. The thin metal film subjected to the ultra-short laser pulse is analyzed. Heat transfer pr...
The thin metal film subjected to the ultra-short laser pulse is analyzed. Heat transfer processes oc...
Generalization of Fourier law, in particular the introduction of two ‘delay times’ (relaxation time ...
Generalization of Fourier law, in particular the introduction of two ‘delay times’ (relaxation time ...
In this paper, the combination of conduction with radiation into a semitransparent medium which incl...
In the paper the different variants of the dual phase lag equation (DPLE) are considered. As one kno...
In the present work, we investigate laser heating of nanoscale thin-films irradiated in three dimens...
In the paper the different variants of the dual phase lag equation (DPLE) are considered. As one kno...
In the present work, we investigate laser heating of nanoscale thin-films irradiated in three dimens...
AbstractThe application of new methods to solution of non-Fourier heat transfer problems has always ...
The application of new methods to solution of non-Fourier heat transfer problems has always been one...
Heat transfer processes occurring in the micro-domains can be described using the dual-phase lag equ...
A dynamic thermal conduction problem needs a mathematical formulation and solution consisting of cyl...
The energy equation corresponding to the dual phase lag model (DPLM) results from the generalized fo...
The energy equation corresponding to the dual phase lag model (DPLM) results from the generalized fo...
Abstract. The thin metal film subjected to the ultra-short laser pulse is analyzed. Heat transfer pr...
The thin metal film subjected to the ultra-short laser pulse is analyzed. Heat transfer processes oc...
Generalization of Fourier law, in particular the introduction of two ‘delay times’ (relaxation time ...
Generalization of Fourier law, in particular the introduction of two ‘delay times’ (relaxation time ...
In this paper, the combination of conduction with radiation into a semitransparent medium which incl...
In the paper the different variants of the dual phase lag equation (DPLE) are considered. As one kno...
In the present work, we investigate laser heating of nanoscale thin-films irradiated in three dimens...
In the paper the different variants of the dual phase lag equation (DPLE) are considered. As one kno...
In the present work, we investigate laser heating of nanoscale thin-films irradiated in three dimens...