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Simulation of macrosegregation in direct-chill casting—A model based on meshless diffuse approximate method

机译:直冷铸造宏观偏析的模拟-基于无网格扩散近似方法的模型

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A multiphysics numerical model has been developed for prediction of macrosegregation in direct-chill casting. The model uses volume averaged mass, momentum, energy, and species conservation equations to simulate the solidification of axisymmetric aluminium-alloy billets. The boundary conditions for the heat transfer include the effects of hot top, mould chill, and direct chill. The volume averaged conservation equations are solved with the explicit local meshless diffuse-approximate method. The approximation coefficients are evaluated on subdomains containing 14 nodes with the second order polynomial basis and the Gaussian weight function. Problems with instabilities due to strong convection are successfully eliminated with an adaptive shift of the weight function and evaluation position in the upstream direction. The automatic adaptive generation of computational node arrangement decreases the calculation time and in a straightforward way enables investigation of the complex flow for geometrically different inflow structures, including sharp and curved edges. The model is used for casting simulation of an Al-5.25wt%Cu alloy billet with a 120 mm radius for various inlet designs. The effect of inlet geometry on the temperature, solid fraction, melt flow, and macrosegregation is investigated. The described developments represent a first meshless numerical approach for simulation of macrosegregation of an important industrial process.
机译:已经开发了多物理场数值模型,用于预测直接冷铸件中的宏观偏析。该模型使用体积平均质量,动量,能量和物种守恒方程来模拟轴对称铝合金坯料的凝固。传热的边界条件包括热顶,模具冷却和直接冷却的影响。用显式局部无网格扩散近似方法求解体积平均守恒方程。在包含14个节点的子域上使用二阶多项式和高斯加权函数评估近似系数。通过权重函数和评估位置在上游方向上的自适应偏移,成功消除了由于强对流引起的不稳定性问题。自动自适应生成计算节点布置可减少计算时间,并以一种简单明了的方式可以研究复杂流体的几何形状不同的流入结构,包括尖锐和弯曲的边缘。该模型用于各种入口设计的半径为120 mm的Al-5.25wt%Cu合金坯的铸造模拟。研究了入口几何形状对温度,固体分率,熔体流动和宏观偏析的影响。所描述的发展代表了一种用于模拟重要工业过程宏观偏析的第一种无网格数值方法。

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