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A THREE-DIMENSIONAL LATTICE BOLTZMANN-CELLULAR AUTOMATON MODEL FOR DENDRITIC SOLIDIFICATION UNDER CONVECTION

机译:对流凝固的三维晶格Boltzmann-细胞自动机模型

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A three-dimensional(3D)lattice Boltzmann(LB)-cellular automaton(CA)model is developed for dendritic solidification of a binary alloy under the effect of melt convection. The model employs LB method to solve for solute transport and fluid dynamics around growing dendrites. CA is adopted to capture solid/liquid interface. It is shown that convection can alter the growth kinetics by affecting solute distribution around the dendrites. The evolution of Al-Cu dendritic morphologies under forced melt convection is discussed. In addition, the effect of undercooling, inlet flow velocity, and alloy composition on the dendrite's tip velocities is studied.
机译:建立了三维(3D)晶格玻尔兹曼(LB)-细胞自动机(CA)模型,用于在熔体对流作用下二元合金的树枝状凝固。该模型采用LB方法求解生长的树枝状晶体周围的溶质运移和流体动力学。采用CA捕获固/液界面。结果表明,对流可以通过影响树枝状晶体周围的溶质分布来改变生长动力学。讨论了强制熔体对流下Al-Cu枝晶形态的演变。此外,研究了过冷,入口流速和合金成分对枝晶尖端速度的影响。

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