In this paper a one-phase supercooled Stefan problem, with a nonlinear relation between the phase change temperature and front velocity, is analysed. The model with the standard linear approximation, valid for small supercooling, is first examined asymptotically. The nonlinear case is more difficult to analyse and only two simple asymptotic results are found. Then, we apply an accurate heat balance integral method to make further progress. Finally, we compare the results found against numerical solutions. The results show that for large supercooling the linear model may be highly inaccurate and even qualitatively incorrect. Similarly as the Stefan number β → 1&sup&+&/sup& the classic Neumann solution which exists down to β ...
We treat two related moving boundary problems. The first is the ill-posed Stefan problem for meltin...
In the present paper a computational model for the macroscopic freezing mechanism under supercooled ...
The work in this paper concerns the study of conventional and refined heat balance integral methods ...
In this paper a one-phase supercooled Stefan problem, with a nonlinear relation between the phase ch...
In this paper a one-phase supercooled Stefan problem, with a nonlinear relation between the phase ch...
In this paper we formulate a Stefan problem appropriate when the thermophysical properties are disti...
In this paper we formulate a Stefan problem appropriate when the thermophysical properties are disti...
In the present paper a computational model for the macroscopic freezing mechanism under supercooled ...
In the present paper a computational model for the macroscopic freezing mechanism under supercooled ...
We treat two related moving boundary problems. The first is the ill-posed Stefan problem for meltin...
We treat two related moving boundary problems. The first is the ill-posed Stefan problem for meltin...
We treat two related moving boundary problems. The first is the ill-posed Stefan problem for meltin...
A generalization of the Stefan problem is proposed for phase transitions in one-dimensional systems,...
We consider the extended Stefan problem for the solidification of a binary alloy in a finite one-dim...
We consider the extended Stefan problem for the solidification of a binary alloy in a finite one-dim...
We treat two related moving boundary problems. The first is the ill-posed Stefan problem for meltin...
In the present paper a computational model for the macroscopic freezing mechanism under supercooled ...
The work in this paper concerns the study of conventional and refined heat balance integral methods ...
In this paper a one-phase supercooled Stefan problem, with a nonlinear relation between the phase ch...
In this paper a one-phase supercooled Stefan problem, with a nonlinear relation between the phase ch...
In this paper we formulate a Stefan problem appropriate when the thermophysical properties are disti...
In this paper we formulate a Stefan problem appropriate when the thermophysical properties are disti...
In the present paper a computational model for the macroscopic freezing mechanism under supercooled ...
In the present paper a computational model for the macroscopic freezing mechanism under supercooled ...
We treat two related moving boundary problems. The first is the ill-posed Stefan problem for meltin...
We treat two related moving boundary problems. The first is the ill-posed Stefan problem for meltin...
We treat two related moving boundary problems. The first is the ill-posed Stefan problem for meltin...
A generalization of the Stefan problem is proposed for phase transitions in one-dimensional systems,...
We consider the extended Stefan problem for the solidification of a binary alloy in a finite one-dim...
We consider the extended Stefan problem for the solidification of a binary alloy in a finite one-dim...
We treat two related moving boundary problems. The first is the ill-posed Stefan problem for meltin...
In the present paper a computational model for the macroscopic freezing mechanism under supercooled ...
The work in this paper concerns the study of conventional and refined heat balance integral methods ...