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SIMULATION OF MACROSEGREGATION DURING DIRECTIONAL SOLIDIFICATION USING MESH ADAPTATION

机译:用网格自适应在方向凝固过程中模拟宏观测定

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Modeling the formation of macroscopic segregation channels during directional solidification processes has important applications in the casting industry. Computations that consider thermosolutal convection involve different length scales ranging from the small solute boundary layer at the dendrite tips to the characteristic size of the casting. In general numerical models of solidification in the presence of a developing mushy zone are computationally inefficient due to nonlinear transport in an anisotropic porous medium. In the present work, mesh adaptation with triangular finite elements is used in conjunction with an efficient fractional-step solver of the momentum equations to predict the occurrence of channel-type segregation defects or freckles. The triangulations are created dynamically using an unstructured grid generator and a refinement criterion that tracks the position of the channel segregates. The efficiency of mesh adaptation is illustrated with simulations showing channel formation and macrosegregation in directional solidification of a Pb-Sn alloy.
机译:在方向凝固过程中建模宏观隔离通道的形成在铸造行业中具有重要应用。考虑热孔对流的计算涉及从枝形尖端处的小溶解边界层的不同长度尺度到铸造的特征尺寸。在发育糊状区存在下凝固的一般数值模型,由于各向异性多孔介质中的非线性传输,在计算上的计算效率低。在本作工作中,具有三角形有限元的网格适配与动量方程的有效分数步骤求解器一起使用,以预测通道型分离缺陷或雀斑的发生。三角形是使用非结构化网格发生器动态创建的,以及跟踪信道隔离的位置的细化标准。仿真显示了网眼自适应的效率,示出了PB-Sn合金的定向凝固中的通道形成和宏观测定。

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