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Space-time finite elements for a simplified thermo-metallurgical problem relevant to casting

机译:时空有限元,用于简化与铸造有关的热冶金问题

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The non-linear thermo-metallurgical problem, relevant for the cooling of a molten metal including the macro-segregation that occurs during the cooling process, is studied here. Due to the strong non-linearities involved in phase transformations, it is necessary to use a fine resolution in space-time in a finite element approximation in order to meet accuracy requirements. We derive space-time FE-methods based on the discontinuous and continuous Galerkin method in time for the energy equation. This formulation integrates the stored energy exactly for a given heat flux. When macro-segregation is incorporated into the model, the problem can be formulated in such a way that the phase-transition drives a flow of species. In addition, diffusion is possible throughout the domain. The model can be further rewritten using a potential approach. By this approach for modelling macro-segregation, we are able to obtain discretizations that guarantee that the balance equations are satisfied, and it is possible to solve the phase-transition problem either as a field problem or as a local problem (defined by a local evolution rule).
机译:本文研究了与熔融金属的冷却有关的非线性热冶金问题,包括在冷却过程中发生的宏观偏析。由于相位转换中存在很强的非线性,因此有必要在时空中以有限元近似值使用高分辨率,以满足精度要求。我们根据能量方程的不连续和连续Galerkin方法及时导出了时空有限元方法。该公式精确地将给定热通量下存储的能量积分。当将宏观隔离纳入模型时,可以用相变驱动物种流动的方式来表达问题。另外,在整个域中扩散是可能的。可以使用潜在方法进一步重写模型。通过这种对宏观偏析进行建模的方法,我们可以获得保证满足平衡方程的离散化,并且有可能将相变问题作为现场问题或作为局部问题(由局部进化规则)。

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