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Large Scale Simulation of Dendritic Growth in Pure Undercooled Melt by Phase-field Model

机译:利用相场模型对纯过冷熔体中枝晶生长的大规模模拟

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In this study we presented a double-grid method for efficient computation of complex dendritic pattern evolving in a large scale solidifying system of pure undercooled melt. The method, which is based on the large difference in phase-field diffusivity and thermal diffusivity in pure material, enables us to use a large time step. The phase field was calculated adaptively only on the grids within the interfacial region and also the thermal field was calculated only within the thermal boundary layer. The computation showed that the complex dendritic patterns with well-developed tertiary arms can be obtained even in a personal computer with a moderate memory space. The computational efficiency of this method, the competitive growth and coarsening of the secondary arms and the tertiary branching from secondary arms were discussed.
机译:在这项研究中,我们提出了一种双网格方法,可以有效地计算纯过冷熔体的大规模凝固系统中演化的复杂枝晶模式。该方法基于纯材料中相场扩散率和热扩散率的巨大差异,因此我们可以使用较大的时间步长。仅在界面区域内的网格上自适应地计算相场,并且仅在热边界层内才计算热场。计算表明,即使在具有中等存储空间的个人计算机中,也可以获得具有发达的第三臂的复杂的树枝状图案。讨论了该方法的计算效率,次级臂的竞争性增长和粗化以及次级臂的第三分支。

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