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Mathematical modelling of fluid flow, heat transfer and solidification in a strip continuous casting process

机译:带钢连铸过程中流体流动,传热和凝固的数学模型

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摘要

A mathematical model has been developed for prediction of the solidification front in the continuous strip casting process, through the fully coupled analysis of fluid flow and heat transfer of a solidifying shell. Fluid flow and heat transfer at the interface of the strip and mould were analysed with two- and three-dimensional (2D and 3D) finite volume methods. The numerical model considers a generalised set of mass, momentum and heat equations that is valid for the solid, liquid and solidification interval. A k-& turbulence model, produced with the commercial program CFX, is used to analyse the solidification process of Cu-Cr alloy in the mould region of the caster. The heat flow and solidification processes have been studied experimentally. Cooling curves during solidification were registered using a thermocouple of type K connected to a data acquisition system. Temperature measurements were also performed in the mould and cooling water. The measured heat flux profiles were used as boundary conditions for the mathematical model. The fluid flow, temperature and heat flux distributions in the mould region of the caster were computed. The shape and location of the solidification front were also determined. Through the iterative analysis of the fluid flow, heat transfer and solidification behaviour, the heat transfer coefficient between the strand and the mould has been determined. The predicted temperature and heat flux distributions were compared with experimental measurements and reasonable agreement was obtained.
机译:通过对凝固壳的流体流动和传热进行完全耦合的分析,已开发出数学模型来预测连续带钢铸造过程中的凝固前沿。使用二维和三维(2D和3D)有限体积方法分析了带材和模具界面处的流体流动和传热。数值模型考虑了一组对固体,液体和凝固间隔有效的广义质量,动量和热方程。使用商业程序CFX生成的k-和湍流模型,用于分析铸机结晶器区域中Cu-Cr合金的凝固过程。已经对热流和凝固过程进行了实验研究。使用连接到数据采集系统的K型热电偶记录凝固过程中的冷却曲线。温度测量也在模具和冷却水中进行。测得的热通量曲线被用作数学模型的边界条件。计算了脚轮模具区域内的流体流量,温度和热通量分布。还确定了凝固前沿的形状和位置。通过对流体流动,传热和凝固行为的迭代分析,确定了铸坯和模具之间的传热系数。将预测的温度和热通量分布与实验测量值进行比较,并获得合理的一致性。

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