A coupled methodology for simulating the simultaneous growth and motion of equiaxed dendrites in solidifying melts is presented. The model uses the volume-averaging principles and combines the features of the enthalpy method for modeling growth, immersed boundary method for handling the rigid solid-liquid interfaces, and the volume of fluid method for tracking the advection of the dendrite. The algorithm also performs explicit-implicit coupling between the techniques used. A two-dimensional framework with incompressible and Newtonian fluid is considered. Validation with available literature is performed and dendrite growth in the presence of rotational and buoyancy driven flow fields is studied. It is seen that the flow fields significantly...
A two-dimensional finite element model for simulation of dendritic solidification of binary alloys i...
A front tracking method is presented for simulations of dendritic solidification of pure substances ...
To study the complexities in multi-dendrite growth during solidification, a fully coupled thermal-so...
A coupled methodology for simulating the simultaneous growth and motion of equiaxed dendrites in sol...
A numerical micro-scale model is developed to study the behavior of dendrite growth in presence of m...
Purpose-In the present work, a numerical method, based on the well established enthalpy technique, i...
A numerical model to study the growth of dendrites in a pure metal solidification process with an im...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...
The phase-field model of solidification is extended to include the effects of fluid flow in the melt...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
An anisotropic phase-field model is used to simulate numerically dendritic solidification for a pure...
This paper presents a new micro-scale model for solidification of eutectic alloys. The model is base...
We study the growth of a single dendrite from a small initial seed in an undercooled melt in the pre...
International audienceThe theory of stable dendritic growth within a forced convective flow field is...
A phasefield model in two dimensions with both surface energy and kinetic anisotropies is used to si...
A two-dimensional finite element model for simulation of dendritic solidification of binary alloys i...
A front tracking method is presented for simulations of dendritic solidification of pure substances ...
To study the complexities in multi-dendrite growth during solidification, a fully coupled thermal-so...
A coupled methodology for simulating the simultaneous growth and motion of equiaxed dendrites in sol...
A numerical micro-scale model is developed to study the behavior of dendrite growth in presence of m...
Purpose-In the present work, a numerical method, based on the well established enthalpy technique, i...
A numerical model to study the growth of dendrites in a pure metal solidification process with an im...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...
The phase-field model of solidification is extended to include the effects of fluid flow in the melt...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
An anisotropic phase-field model is used to simulate numerically dendritic solidification for a pure...
This paper presents a new micro-scale model for solidification of eutectic alloys. The model is base...
We study the growth of a single dendrite from a small initial seed in an undercooled melt in the pre...
International audienceThe theory of stable dendritic growth within a forced convective flow field is...
A phasefield model in two dimensions with both surface energy and kinetic anisotropies is used to si...
A two-dimensional finite element model for simulation of dendritic solidification of binary alloys i...
A front tracking method is presented for simulations of dendritic solidification of pure substances ...
To study the complexities in multi-dendrite growth during solidification, a fully coupled thermal-so...