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Large Eddy Simulation of Transient Flow, Solidification, and Particle Transport Processes in Continuous-Casting Mold

机译:连续铸造模具中瞬态流动,凝固和颗粒输送过程的大型涡流模拟

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摘要

The current study developed a coupled computational model to simulate the transient fluid flow, solidification, and particle transport processes in a slab continuous-casting mold. Transient flow of molten steel in the mold is calculated using the large eddy simulation. An enthalpy-porosity approach is used for the analysis of solidification processes. The transport of bubble and non-metallic inclusion inside the liquid pool is calculated using the Lagrangian approach based on the transient flow field. A criterion of particle entrapment in the solidified shell is developed using the user-defined functions of FLUENT software (ANSYS, Inc., Canonsburg, PA). The predicted results of this model are compared with the measurements of the ultrasonic testing of the rolled steel plates and the water model experiments. The transient asymmetrical flow pattern inside the liquid pool exhibits quite satisfactory agreement with the corresponding measurements. The predicted complex instantaneous velocity field is composed of various small recirculation zones and multiple vortices. The transport of particles inside the liquid pool and the entrapment of particles in the solidified shell are not symmetric. The Magnus force can reduce the entrapment ratio of particles in the solidified shell, especially for smaller particles, but the effect is not obvious. The Marangoni force can play an important role in controlling the motion of particles, which increases the entrapment ratio of particles in the solidified shell obviously.
机译:目前的研究开发了一种耦合的计算模型,用于模拟板坯连续铸造模具中的瞬态流体流动,凝固和颗粒输送过程。使用大涡模拟计算模具中钢水渗透钢的瞬态流量。焓 - 孔隙度方法用于分析凝固过程。利用基于瞬态流场的拉格朗日方法计算液体池内的气泡和非金属包裹物的运输。使用Fluent软件的用户定义功能(Ansys,Inc.,Canonsburg,PA),开发了凝固壳中的颗粒夹紧的标准。将该模型的预测结果与轧制钢板和水模型实验的超声波测试的测量进行了比较。液体池内的瞬态不对称流动图案与相应的测量表现出相当令人满意的协议。预测的复杂瞬时速度场由各种小再循环区域和多个涡流组成。液体池内的颗粒的运输和凝固壳中的颗粒的夹杂物不对称。马格努力力可以降低固化壳中颗粒的夹带比,特别是对于较小的颗粒,但效果不明显。 Marangoni力可以在控制颗粒的运动方面发挥重要作用,这显然增加了凝固壳中的颗粒的夹带比。

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  • 来源
    《JOM》 |2014年第7期|共13页
  • 作者单位

    School of Materials and Metallurgy Northeastern University Shenyang 110819 People's Republic of China.;

    School of Materials and Metallurgy Northeastern University Shenyang 110819 People's Republic of China.;

    School of Materials and Metallurgy Northeastern University Shenyang 110819 People's Republic of China.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有色金属冶炼;金属学与金属工艺;
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