A two-dimensional model is developed to simulate dendrite growth and movement in a gravity environment. The model combines the features of cellular automaton and lattice Boltzmann methods. Two sets of distribution functions are adopted to calculate the melt flow and solute transport simultaneously. The fluid force acting on the dendrite is calculated by extending the basic flow simulation at the solid-liquid interface. Incorporating the force interaction between melt flow and solidified dendrite into the algorithm for dendritic growth, the movement of a growing dendrite in the flowing melt can be simulated. After model validation, the coupled model has been applied to simulate the evolution and motion of an individual nucleus that grows int...
A new two-dimensional modeling approach combining the cellular automaton(CA) and the lattice Boltzma...
The presence of bulk and interdendritic flow during solidification can alter the microstructure, pot...
The wettability between solid and porosity plays an important role in the growth of dendrites and po...
To simulate three dimensional (3D) solute-driven dendrite growth, a new numerical technique is intro...
AbstractA two-dimensional (2D) coupled model is developed for the simulation of dendritic growth dur...
A three-dimensional (3D) lattice Boltzmann (LB) model is developed to simulate the dendritic growth ...
An anisotropic lattice Boltzman - phase field scheme is proposed to study dendritic growth in the pr...
AbstractWe propose a scheme for simulation of the solute-driven dendritic solidification which accou...
A two-dimensional model for the simulation of a binary dendritic growth with convection has been dev...
At present, the calculation of three-dimensional (3D) dendrite motion using the cellular automata (C...
A multi-relaxation-time (MRT) lattice Boltzmann (LB) based model is utilized to simulate the dendrit...
A numerical micro-scale model is developed to study the behavior of dendrite growth in presence of m...
A Cellular Automaton (CA) model to track the solid-liquid interface movement combined with finite vo...
A comprehensive probabilistic model for simulating dendrite morphology and investigating dendritic g...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...
A new two-dimensional modeling approach combining the cellular automaton(CA) and the lattice Boltzma...
The presence of bulk and interdendritic flow during solidification can alter the microstructure, pot...
The wettability between solid and porosity plays an important role in the growth of dendrites and po...
To simulate three dimensional (3D) solute-driven dendrite growth, a new numerical technique is intro...
AbstractA two-dimensional (2D) coupled model is developed for the simulation of dendritic growth dur...
A three-dimensional (3D) lattice Boltzmann (LB) model is developed to simulate the dendritic growth ...
An anisotropic lattice Boltzman - phase field scheme is proposed to study dendritic growth in the pr...
AbstractWe propose a scheme for simulation of the solute-driven dendritic solidification which accou...
A two-dimensional model for the simulation of a binary dendritic growth with convection has been dev...
At present, the calculation of three-dimensional (3D) dendrite motion using the cellular automata (C...
A multi-relaxation-time (MRT) lattice Boltzmann (LB) based model is utilized to simulate the dendrit...
A numerical micro-scale model is developed to study the behavior of dendrite growth in presence of m...
A Cellular Automaton (CA) model to track the solid-liquid interface movement combined with finite vo...
A comprehensive probabilistic model for simulating dendrite morphology and investigating dendritic g...
In this article we present an enthalpy-based simulation for the evolution of equiaxial dendrites, gr...
A new two-dimensional modeling approach combining the cellular automaton(CA) and the lattice Boltzma...
The presence of bulk and interdendritic flow during solidification can alter the microstructure, pot...
The wettability between solid and porosity plays an important role in the growth of dendrites and po...