A multi-relaxation-time (MRT) lattice Boltzmann (LB) based model is utilized to simulate the dendritic growth with melt convection in solidification of alloys. It models melt convection by the MRT-LB equation and solute transport by a conservation equation with a pseudo-potential function. The D2Q9 lattice vectors are proposed to describe interface advancement in the liquid-solid transition. Effects of undercoolings, interface curvature and preferred growth orientation are incorporated into the model implicitly. After model validation, dendritic growth under several conditions of pure diffusion and melt convection was numerically investigated, and the solidification entropies were proposed to quantitatively characterize the solidification s...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
A two-dimensional model is developed to simulate dendrite growth and movement in a gravity environme...
In this study, we present a new computational approach for studying the effect of melt convection on...
AbstractA two-dimensional (2D) coupled model is developed for the simulation of dendritic growth dur...
An anisotropic lattice Boltzman - phase field scheme is proposed to study dendritic growth in the pr...
A three-dimensional (3D) lattice Boltzmann (LB) model is developed to simulate the dendritic growth ...
We propose a new phase-field model formulated within the system of lattice Boltzmann (LB) equation f...
Density change is ubiquitous in phase transformation, and it can induce melt convection which strong...
Purpose-In the present work, a numerical method, based on the well established enthalpy technique, i...
In the present Letter, a hybrid lattice Boltzmann methodology is developed for simulating convection...
A new two-dimensional modeling approach combining the cellular automaton(CA) and the lattice Boltzma...
This paper presents a comparative study between the pseudopotential Shan-Chen model and the phase fi...
The topic of this dissertation is the solidification of a binary melt. The investigation is separate...
A two-dimensional finite element model for simulation of dendritic solidification of binary alloys i...
In the present study, the influence of natural convection on the lamellar eutectic growth is determi...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
A two-dimensional model is developed to simulate dendrite growth and movement in a gravity environme...
In this study, we present a new computational approach for studying the effect of melt convection on...
AbstractA two-dimensional (2D) coupled model is developed for the simulation of dendritic growth dur...
An anisotropic lattice Boltzman - phase field scheme is proposed to study dendritic growth in the pr...
A three-dimensional (3D) lattice Boltzmann (LB) model is developed to simulate the dendritic growth ...
We propose a new phase-field model formulated within the system of lattice Boltzmann (LB) equation f...
Density change is ubiquitous in phase transformation, and it can induce melt convection which strong...
Purpose-In the present work, a numerical method, based on the well established enthalpy technique, i...
In the present Letter, a hybrid lattice Boltzmann methodology is developed for simulating convection...
A new two-dimensional modeling approach combining the cellular automaton(CA) and the lattice Boltzma...
This paper presents a comparative study between the pseudopotential Shan-Chen model and the phase fi...
The topic of this dissertation is the solidification of a binary melt. The investigation is separate...
A two-dimensional finite element model for simulation of dendritic solidification of binary alloys i...
In the present study, the influence of natural convection on the lamellar eutectic growth is determi...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
A two-dimensional model is developed to simulate dendrite growth and movement in a gravity environme...
In this study, we present a new computational approach for studying the effect of melt convection on...