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Water Modeling of Swirling Flow Tundish for Steel Continuous Casting 被引量:11

Water Modeling of Swirling Flow Tundish for Steel Continuous Casting
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摘要 A conventional turbulence inhibitor is compared with a swirling chamber from the points of view of fluid flow and removal rate of inclusion in the tundish. Comparing the RTD curves, inclusion removals, and the streamlines in water model experiments, it can be found that the tundish equipped with a swirling chamber has a great effect on improving the flow field, and the floatation rate of inclusion is higher than the tundish with a turbulence inhibitor. Because of the introduction of the swirling chamber, the flow field and inclusion removal in a two-strand swirling flow tundish are asymmetrical. Rotating the inlet direction of swirling chamber 60 degree is a good strategy to improve the asymmetrical flow field. A conventional turbulence inhibitor is compared with a swirling chamber from the points of view of fluid flow and removal rate of inclusion in the tundish. Comparing the RTD curves, inclusion removals, and the streamlines in water model experiments, it can be found that the tundish equipped with a swirling chamber has a great effect on improving the flow field, and the floatation rate of inclusion is higher than the tundish with a turbulence inhibitor. Because of the introduction of the swirling chamber, the flow field and inclusion removal in a two-strand swirling flow tundish are asymmetrical. Rotating the inlet direction of swirling chamber 60 degree is a good strategy to improve the asymmetrical flow field.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2009年第5期17-22,共6页 钢铁研究学报(英文版)
关键词 water model experiment flow field swirling chamber inclusion removal continuous casting tundish water model experiment flow field swirling chamber inclusion removal continuous casting tundish
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参考文献11

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