首页> 外文会议>TMS(The Minerals, Metals amp; Materials Society) Annual Meeting; 20040314-20040318; Charlotte,NC; US >A 3D-FEM MODEL SOLVING THERMOMECHANICS AND MACROSEGREGATION IN BINARY ALLOYS SOLIDIFICATION
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A 3D-FEM MODEL SOLVING THERMOMECHANICS AND MACROSEGREGATION IN BINARY ALLOYS SOLIDIFICATION

机译:解决二元合金凝固过程中热力学和宏观偏析的3D有限元模型

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This paper introduces a three-dimensional numerical model for the coupled solution of momentum, energy and solute conservation equations, for binary alloys solidification. The spatial discretisation is carried out using linear tetrahedral finite elements, particularly those of P1+/P1 type for the velocity-pressure resolution of momentum equation. The liquid flow in the mushy zone is assumed to be governed by the Darcy's law. Thermal and buoyancy forces are taken into account by means of the Boussinesq's model. Microsegregation obeys the lever rule. The resulting solute transport equation is solved by the SUPG method. Coupling strategy between momentum, energy and solute equations is discussed and two applications are studied.
机译:本文介绍了二维数值模型,用于二元合金凝固的动量,能量和溶质守恒方程的耦合解。使用线性四面体有限元(尤其是用于动量方程的速度-压力分辨率的P1 + / P1类型的有限元)进行空间离散。假定糊状区中的液体流动受达西定律支配。通过Boussinesq模型可以考虑热力和浮力。微量偏析遵守杠杆规则。所得的溶质运移方程通过SUPG方法求解。讨论了动量,能量和溶质方程之间的耦合策略,并研究了两种应用。

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