A three-dimensional hear transfer model has been developed to obtain the conductive thermal field inside a brick-type solid under a moving heat source with different beam profiles. The problem in quasi-steady state has been approximated by neglecting the axial diffusion component; thus, for Peclet numbers greater than 5, the elliptic differential equation becomes a parabolic one along the motion direction. The dependence of the solution on the radiative and convective heat losses has been highlighted. Thermal fields are strongly dependent on different spot shapes and on the impinging jet; this situation allows control of the parameters involved in the technological process
In this paper, the melting of a semi-infinite body as a result of a moving laser beam has been studi...
Analytical and numerical solutions have been obtained for some moving boundary problems associated w...
An analytical solution is computed for the thermal field induced in a semi-infinite body by a moving...
A comparison between two quasi-steady state models describing a three dimensional conductive thermal...
A three dimensional conductive field is analyzed and solved by means of the COMSOL Multiphysics code...
A three dimensional numerical analysis of a solid irradiated by a moving laser heat source in a quas...
A three dimensional conductive field is analyzed and solved numerically by means of a commercial cod...
In this paper a three dimensional conductive field in a semi-infinite solid with finite thickness an...
International audienceWe propose in this paper an analytical study of the temperature distribution i...
Using the heat conduction equation, the temperature distribution caused by a three-dimensional movin...
We propose in this paper an analytical study of the temperature distribution in a solid subjected to...
An analytical solution to the three-dimensional quasi-stationary problem in a finite depth and width...
The paper deals with determining a temperature field of an isotropic solid with inclusion represente...
The analytical study of the processes of thermal conductivity at high intensity heating of dense bod...
Heat transfer is the exchange of heat energy between two bodies. There are three different modes of ...
In this paper, the melting of a semi-infinite body as a result of a moving laser beam has been studi...
Analytical and numerical solutions have been obtained for some moving boundary problems associated w...
An analytical solution is computed for the thermal field induced in a semi-infinite body by a moving...
A comparison between two quasi-steady state models describing a three dimensional conductive thermal...
A three dimensional conductive field is analyzed and solved by means of the COMSOL Multiphysics code...
A three dimensional numerical analysis of a solid irradiated by a moving laser heat source in a quas...
A three dimensional conductive field is analyzed and solved numerically by means of a commercial cod...
In this paper a three dimensional conductive field in a semi-infinite solid with finite thickness an...
International audienceWe propose in this paper an analytical study of the temperature distribution i...
Using the heat conduction equation, the temperature distribution caused by a three-dimensional movin...
We propose in this paper an analytical study of the temperature distribution in a solid subjected to...
An analytical solution to the three-dimensional quasi-stationary problem in a finite depth and width...
The paper deals with determining a temperature field of an isotropic solid with inclusion represente...
The analytical study of the processes of thermal conductivity at high intensity heating of dense bod...
Heat transfer is the exchange of heat energy between two bodies. There are three different modes of ...
In this paper, the melting of a semi-infinite body as a result of a moving laser beam has been studi...
Analytical and numerical solutions have been obtained for some moving boundary problems associated w...
An analytical solution is computed for the thermal field induced in a semi-infinite body by a moving...