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An Experimental and Numerical Study of Swirling Flow Generated by TurboSwirl in an Uphill Teeming Ingot Casting Process

机译:TurboSwirl在上坡铸锭铸造过程中产生旋流的实验和数值研究

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摘要

A swirling flow has been demonstrated to be beneficial for making the flow pattern even and to reduce turbulence during filling in ingot casting. A new swirling flow generation device, TurboSwirl, was applied to improve the flow pattern of the liquid steel as it flows into the mold so that a more stable flow could be obtained. A water model was built including the TurboSwirl with different flaring angles of the divergent nozzle, according to a former numerical study indicating that a much more beneficial flow pattern could be obtained by reducing the flaring angle. To validate the mathematical model, the air-core vortex formed in the water model experiment was used, and the length of the vortex was measured and compared to the numerical predictions. Different turbulence models including the standard k-ε, realizable k-ε and Reynolds stress model were tested. It was found that only the Reynolds stress model could most accurately simulate the high swirling flow including a vortex. In addition, the radial velocity of the water around the vortex was measured by an ultrasonic velocity profiler (UVP). The experimental results revealed a high turbulence of the swirling flow and strong fluctuations of the vortex. The radial velocity of the water around the upper part of the vortex could be predicted well compared to the experimental results by the UVP measurements.
机译:已经证明涡流有利于使流型均匀并且减少在铸锭填充过程中的湍流。应用了一种新型的涡流产生装置TurboSwirl来改善液态钢流入模具中的流动方式,从而获得更稳定的流动。根据以前的一项数值研究,建立了一个水模型,其中包括具有不同发散喷嘴扩口角度的TurboSwirl,表明可以通过减小扩口角度获得更有益的流动模式。为了验证该数学模型,使用了在水模型实验中形成的空心涡流,并测量了涡流的长度并将其与数值预测结果进行了比较。测试了不同的湍流模型,包括标准k-ε,可实现的k-ε和雷诺应力模型。发现只有雷诺应力模型才能最准确地模拟包括涡流的高涡旋流。另外,通过超声速度轮廓仪(UVP)测量涡旋周围水的径向速度。实验结果表明,涡流高度湍流,涡旋强烈波动。与通过UVP测量得到的实验结果相比,可以很好地预测涡旋上部周围水的径向速度。

著录项

  • 来源
    《ISIJ international》 |2016年第8期|1404-1412|共9页
  • 作者单位

    Division of Applied Process Metallurgy, Department of Materials Science and Engineering, KTH Royal Institute of Technology, SE-100 44 Stockholm, Sweden;

    Division of Applied Process Metallurgy, Department of Materials Science and Engineering, KTH Royal Institute of Technology, SE-100 44 Stockholm, Sweden;

    Division of Applied Process Metallurgy, Department of Materials Science and Engineering, KTH Royal Institute of Technology, SE-100 44 Stockholm, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    water model; ingot casting; TurboSwirl; swirling flow; vortex; ultrasonic velocity profiler;

    机译:水模型铸锭TurboSwirl;旋流涡流;超声波速度分析仪;

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