The Front Tracking based computer simulation model of solid-liquid phase transition driven by diffusion and thermo-solutal natural convection is presented, and its predictions are verified and validated by comparison with the data obtained from the other available numerical solution and the experimental study. The front tracking approach, based on local dendrite tip kinetics, is capable of distinguishing zones of columnar mush and of equiaxed grains and, thus, provides means for more precise modeling of binary alloy solidification.
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