Modeling study on fluid flow and inclusion motion in 6-strand bloom caster tundishes

Guanghua Wen, Lifeng Zhang, Ping Tang, Zhenjlang Su, Mingmei Zhu, Wuan Gu, Kewen Zhao

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    Cite this article as:

    Guanghua Wen, Lifeng Zhang, Ping Tang, Zhenjlang Su, Mingmei Zhu, Wuan Gu, and Kewen Zhao, Modeling study on fluid flow and inclusion motion in 6-strand bloom caster tundishes, J. Univ. Sci. Technol. Beijing , 11(2004), No. 4, pp.310-314.
    Guanghua Wen, Lifeng Zhang, Ping Tang, Zhenjlang Su, Mingmei Zhu, Wuan Gu, and Kewen Zhao, Modeling study on fluid flow and inclusion motion in 6-strand bloom caster tundishes, J. Univ. Sci. Technol. Beijing , 11(2004), No. 4, pp.310-314.
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    Metallurgy

    Modeling study on fluid flow and inclusion motion in 6-strand bloom caster tundishes

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      Guanghua Wen E-mail: wengh@cqu.edu.cn

    The behavior of fluid flow and particle motion in a 6-strand bloom caster tundish was investigated by a water model and numerical simulation. Compared with a device without flow control, the tundish with flow control has an important effect on the fluid flow pattern and inclusion removal. It is revealed that by non-isothermal process, which is real production condition, the fluid flow in tundish shows a strong buoyancy pattem, which drives particles to move upwards. The particle removal was quantitatively studied by mathematical and physical simulations.

     

    Metallurgy

    Modeling study on fluid flow and inclusion motion in 6-strand bloom caster tundishes

    Author Affilications
    • Received: 13 December 2003;
    The behavior of fluid flow and particle motion in a 6-strand bloom caster tundish was investigated by a water model and numerical simulation. Compared with a device without flow control, the tundish with flow control has an important effect on the fluid flow pattern and inclusion removal. It is revealed that by non-isothermal process, which is real production condition, the fluid flow in tundish shows a strong buoyancy pattem, which drives particles to move upwards. The particle removal was quantitatively studied by mathematical and physical simulations.

     

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