A theoretical analysis is carried out to observe the influence of important flow parameters such as Nusselt number and Sherwood number on the tip speed of an equiaxed dendrite growing in a convecting alloy melt. The effect of thermal and solutal transfer at the interface due to convection is equated to an undercooling of the melt, and an expression is derived for this equivalent undercooling in terms of the flow Nusselt number and Sherwood number. Results for the equivalent undercooling are compared with corresponding numerical values obtained by performing simulations based on the enthalpy method. This method represents a relatively simple procedure to analyze the effects of melt convection on the growth rate of dendrites. (C) 2013 Elsevie...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...
A series of mathematical models and codes are developed to investigate the dendritic growth of Fe-0....
An axisymmetric dendrite of pure material solidies downward into an undercooled melt Surface energy...
A theoretical analysis is carried out to observe the influence of important flow parameters such as ...
This paper presents a theoretical model for studying the effects of shrinkage induced flow on the gr...
Purpose-In the present work, a numerical method, based on the well established enthalpy technique, i...
International audienceThe theory of stable dendritic growth within a forced convective flow field is...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
A numerical micro-scale model is developed to study the behavior of dendrite growth in presence of m...
Using the developed sharp-interface model of solidification we quantitatively estimate influence of ...
The solid-phase pattern in the form of a dendrite is one of the frequently met structures produced f...
The solution to the boundary integral equation defining undercooling at the surface of a parabolic d...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
A stable growth mode of a single dendritic crystal solidifying in an undercooled ternary (multicompo...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...
A series of mathematical models and codes are developed to investigate the dendritic growth of Fe-0....
An axisymmetric dendrite of pure material solidies downward into an undercooled melt Surface energy...
A theoretical analysis is carried out to observe the influence of important flow parameters such as ...
This paper presents a theoretical model for studying the effects of shrinkage induced flow on the gr...
Purpose-In the present work, a numerical method, based on the well established enthalpy technique, i...
International audienceThe theory of stable dendritic growth within a forced convective flow field is...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
A numerical micro-scale model is developed to study the behavior of dendrite growth in presence of m...
Using the developed sharp-interface model of solidification we quantitatively estimate influence of ...
The solid-phase pattern in the form of a dendrite is one of the frequently met structures produced f...
The solution to the boundary integral equation defining undercooling at the surface of a parabolic d...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
A stable growth mode of a single dendritic crystal solidifying in an undercooled ternary (multicompo...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...
A series of mathematical models and codes are developed to investigate the dendritic growth of Fe-0....
An axisymmetric dendrite of pure material solidies downward into an undercooled melt Surface energy...