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Verified reduction of a model for a continuous casting process

机译:经过验证的简化连铸工艺模型

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The casting of metals is known to involve the complex interaction of turbulent momentum and heat transfer in the presence of solidification, and it is believed that computational fluid dynamical (CFD) techniques are required to model it correctly. Here, using asymptotic methods, we demonstrate that the key quantities obtained in an earlier CFD model for a particular continuous casting process - ostensibly for a pure metal, but equally for an alloy of eutectic composition - can be recovered using a much simpler model that takes into account just the heat transfer, requiring the numerical solution of a two-phase Stefan problem. Combining this with a more recent asymptotic thermomechanical model for the same continuous casting process, we postulate that it should be possible, with the additional help of algebraic manipulation, to reduce a model that takes into account turbulent momentum and heat transfer in the melt and the thermomechanics in the solid shell to one formulated in terms of only heat transfer, without adversely affecting model predictions.
机译:已知在铸造过程中,金属铸造涉及湍动量和热传递的复杂相互作用,并且据信需要使用计算流体力学(CFD)技术来正确建模。在这里,我们使用渐近方法证明,在早期CFD模型中针对特定的连续铸造过程获得的关键量(表面上对于纯金属而言,对于共晶成分合金而言同样如此)可以使用更简单的模型来回收:仅考虑热传递,就需要对两相Stefan问题进行数值求解。结合同一连续铸造过程的最新渐近热力学模型,我们推测,在代数操纵的额外帮助下,应该有可能减少考虑湍流动量和熔体与熔体传热的模型。固体壳中的热力学仅根据传热来制定,不会对模型预测产生不利影响。

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