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Modeling of growth and motion of equiaxed dendrites in a convecting melt

机译:转向熔体中等轴枝条的生长和运动的建模

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A numerical micro-scale model is developed to study the behavior of dendrite growth in presence of melt convection. In this method, an explicit, coupled enthalpy model is used to simulate the growth of an equiaxed dendrite, while a Volume of Fluid (VOF) method is used to track the movement of the dendrite in the convecting melt in a two-dimensional Eulerian framework. Numerical results demonstrate the effectiveness of the enthalpy model in simulating the dendritic growth involving complex shape, and the accuracy of VOF method in conserving mass and preserving the complex dendritic shape during motion. Simulations are performed in presence of uniform melt flow for both fixed and moving dendrites, and the difference in dendrite morphology is shown.
机译:开发了一种数值微级模型,以研究熔融对流的情况下枝晶生长的行为。在该方法中,使用明确的耦合焓模型来模拟等式枝晶的生长,而一定体积的流体(VOF)方法用于跟踪二维欧拉框架中的枝晶在对流熔体中的运动。数值结果证明了焓模型在模拟涉及复杂形状的树枝状生长中的有效性,以及VOF方法在节省质量和保留运动中保持复杂树突形状的准确性。在存在固定和移动的树枝状晶体的均匀熔体流动存在下进行模拟,并且显示了树突形态的差异。

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