Refined integral heat balance is developed for Stefan problem with time-dependent temperature applied to exchange surface. The method is applied to phase change in the half-plane and ordinary differential equation is obtained for the solid/liquid interface. The results are compared to those obtained by heat balance integral, perturbation and numerical methods.SCOPUS: ar.jinfo:eu-repo/semantics/publishe
In this paper the one-dimensional two-phase Stefan problem is studied analytically leading to a syst...
The classical one-phase one-dimensional Stefan problem is numerically solved on rectangles, Rj, of i...
The macroscopic description of matter undergoing a phase change (the Stefan Problem) can be formulat...
The work in this paper concerns the study of conventional and refined heat balance integral methods ...
Since the pioneering studies of Goodman on the application of the integral method to transient non-l...
Since the pioneering studies of Goodman on the application of the integral method to transient non-l...
The work in this paper concerns the study of different approximations for one-dimensional one-phase ...
A fixed-space-step method and a fixed-time-step method are presented, respectively, for solving t...
When using a polynomial approximating function the most contentious aspect of the Heat Balance Integ...
The classical one-phase Stefan problem describes the temperature distribution in a homogeneous mediu...
In this paper we present a new, accurate form of the heat balance integral method, termed the Combin...
The classical one-phase Stefan problem describes the temperature distribution in a homogeneous mediu...
This paper concerns the practical applications and modelling of Stefan problems with a flowing thin ...
The Stefan problem has been considered both analytically and numerically since the end of the 19th c...
The classical one-phase Stefan problem describes the temperature distribution in a homogeneous mediu...
In this paper the one-dimensional two-phase Stefan problem is studied analytically leading to a syst...
The classical one-phase one-dimensional Stefan problem is numerically solved on rectangles, Rj, of i...
The macroscopic description of matter undergoing a phase change (the Stefan Problem) can be formulat...
The work in this paper concerns the study of conventional and refined heat balance integral methods ...
Since the pioneering studies of Goodman on the application of the integral method to transient non-l...
Since the pioneering studies of Goodman on the application of the integral method to transient non-l...
The work in this paper concerns the study of different approximations for one-dimensional one-phase ...
A fixed-space-step method and a fixed-time-step method are presented, respectively, for solving t...
When using a polynomial approximating function the most contentious aspect of the Heat Balance Integ...
The classical one-phase Stefan problem describes the temperature distribution in a homogeneous mediu...
In this paper we present a new, accurate form of the heat balance integral method, termed the Combin...
The classical one-phase Stefan problem describes the temperature distribution in a homogeneous mediu...
This paper concerns the practical applications and modelling of Stefan problems with a flowing thin ...
The Stefan problem has been considered both analytically and numerically since the end of the 19th c...
The classical one-phase Stefan problem describes the temperature distribution in a homogeneous mediu...
In this paper the one-dimensional two-phase Stefan problem is studied analytically leading to a syst...
The classical one-phase one-dimensional Stefan problem is numerically solved on rectangles, Rj, of i...
The macroscopic description of matter undergoing a phase change (the Stefan Problem) can be formulat...