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首页> 外文期刊>JOM >Multiscale Mathematical Model with Discrete–Continuum Transition for Gas–Liquid–Slag Three-Phase Flow in Gas-Stirred Ladles
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Multiscale Mathematical Model with Discrete–Continuum Transition for Gas–Liquid–Slag Three-Phase Flow in Gas-Stirred Ladles

机译:多尺度数学模型,采用离散连续过渡气液渣三相流动的汽油钢包

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摘要

Gas–liquid–slag three-phase flow in a gas-stirred ladle is composed of both large-scale interfaces and discrete bubbles, making its modeling and study difficult. In the present work, a discrete–continuum transition model was incorporated into a hybrid Eulerian–Lagrangian model to comprehensively resolve the fluid flow in ladle metallurgy. The volume-of-fluid method was used to capture the large-scale interfaces, while a discrete bubble model was applied to simulate the small bubbles that cannot be resolved using the interface-capturing method. The transition between the small bubbles in Lagrangian coordinates and the large bubbles whose interfaces are captured is included using a newly developed algorithm to further reveal the bubble behaviors. Moreover, the complicated vortex structure is characterized using the large-eddy simulation approach. The present modeling framework enables the most complete analysis of gas–liquid–slag three-phase flow in ladles to date.
机译:气体搅拌钢包中的气体渣三相流由大规模接口和离散气泡组成,使其建模和研究变得困难。 在目前的工作中,将离散连续的转换模型纳入混合欧拉拉格朗安模型,以全面地解决钢包冶金中的流体流动。 使用流体体积方法来捕获大规模接口,而应用离散气泡模型来模拟不能使用界面捕获方法解决不能解决的小气泡。 拉格朗日坐标的小气泡与捕获接口的大气泡之间的过渡包括使用新开发的算法进一步揭示泡沫行为。 此外,复杂的涡旋结构用大涡模拟方法的特征在于。 本建模框架可实现迄今为止批时钢气液 - 渣的三相流动最完整的分析。

著录项

  • 来源
    《JOM》 |2018年第12期|共9页
  • 作者单位

    College of Energy and Electrical Engineering Hohai University;

    Institute of Thermal Science and Technology Shandong University;

    College of Energy and Electrical Engineering Hohai University;

    College of Energy and Electrical Engineering Hohai University;

    School of Metallurgy Northeastern University;

  • 收录信息
  • 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;
  • 关键词

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