We propose a new phase-field model formulated within the system of lattice Boltzmann (LB) equation for simulating solidification and dendritic growth with fully coupled melt flow and thermosolutal convection–diffusion. With the evolution of the phase field and the transport phenomena all modeled and integrated within the same LB framework, this method preserves and combines the intrinsic advantages of the phase-field method (PFM) and the lattice Boltzmann method (LBM). Particularly, the present PFM/LBM model has several improved features compared to the existing phase-field models including: (1) a novel multiple-relaxation-time (MRT) LB scheme for the phase-field evolution is proposed to effectively model solidification coupled with melt fl...
In order to simulate microstructure evolution during a solidification process, the Kobayashi model w...
Phase-field model was employed to quantitatively study the effect of convection on pattern selection...
A comprehensive probabilistic model for simulating dendrite morphology and investigating dendritic g...
An anisotropic lattice Boltzman - phase field scheme is proposed to study dendritic growth in the pr...
A multi-relaxation-time (MRT) lattice Boltzmann (LB) based model is utilized to simulate the dendrit...
Analyses of heat and mass transfer between different materials and phases are essential in numerous ...
AbstractA two-dimensional (2D) coupled model is developed for the simulation of dendritic growth dur...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
A three-dimensional (3D) lattice Boltzmann (LB) model is developed to simulate the dendritic growth ...
Phase field models are powerful tools to simulate the interfaces evolution in glass melt solidificat...
This paper presents a comparative study between the pseudopotential Shan-Chen model and the phase fi...
Density change is ubiquitous in phase transformation, and it can induce melt convection which strong...
Alloy dendrite growth during solidification with coupled thermal-solute-convection fields has been s...
This article presents a novel coupling of numerical techniques that enable three-dimensional convect...
AbstractWe propose a scheme for simulation of the solute-driven dendritic solidification which accou...
In order to simulate microstructure evolution during a solidification process, the Kobayashi model w...
Phase-field model was employed to quantitatively study the effect of convection on pattern selection...
A comprehensive probabilistic model for simulating dendrite morphology and investigating dendritic g...
An anisotropic lattice Boltzman - phase field scheme is proposed to study dendritic growth in the pr...
A multi-relaxation-time (MRT) lattice Boltzmann (LB) based model is utilized to simulate the dendrit...
Analyses of heat and mass transfer between different materials and phases are essential in numerous ...
AbstractA two-dimensional (2D) coupled model is developed for the simulation of dendritic growth dur...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
A three-dimensional (3D) lattice Boltzmann (LB) model is developed to simulate the dendritic growth ...
Phase field models are powerful tools to simulate the interfaces evolution in glass melt solidificat...
This paper presents a comparative study between the pseudopotential Shan-Chen model and the phase fi...
Density change is ubiquitous in phase transformation, and it can induce melt convection which strong...
Alloy dendrite growth during solidification with coupled thermal-solute-convection fields has been s...
This article presents a novel coupling of numerical techniques that enable three-dimensional convect...
AbstractWe propose a scheme for simulation of the solute-driven dendritic solidification which accou...
In order to simulate microstructure evolution during a solidification process, the Kobayashi model w...
Phase-field model was employed to quantitatively study the effect of convection on pattern selection...
A comprehensive probabilistic model for simulating dendrite morphology and investigating dendritic g...