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Dissymmetric flow phenomenon in a multistrand tundish
作者姓名:Mingmei Zhu  Guanghua Wen  Ping Tang  and Yufeng Wang College of Material Science and Engineering  Chongqing University  Chongqing  China
作者单位:Mingmei Zhu,Guanghua Wen,Ping Tang,and Yufeng Wang College of Material Science and Engineering,Chongqing University,Chongqing 400044,China
摘    要:The dissymmetric flow phenomenon exists in a symmetric multistrand tundish. It was studied by the physical simulation experiment. The fundamental flow characteristic of dissymmetry was analyzed. The asymmetry of the flow field, the temperature field, and the inclusions distribution without flow-control devices (FCDs) were compared with those with FCDs. It is proved that the asymmetry of the flow and temperature field along the outlets at the long range is more obvious. The symmetric FCDs installation has a slight effect on the dissymmetric temperature field, simultaneously, the symmetry of the average residence time and the fluid flow pattern has improved, and the fluid flow in the tundish has been more reasonable. In case of a symmetric multistrand tundish having a large volume, the influence of the dissymmetric phenomenon should be considered and the flow behaviors in the whole tun- dish should be studied completely.

关 键 词:耐火材料  非对称性  物理模拟  控制技术
收稿时间:20 November 2006

Dissymmetric flow phenomenon in a multistrand tundish
Mingmei Zhu,Guanghua Wen,Ping Tang,and Yufeng Wang College of Material Science and Engineering,Chongqing University,Chongqing ,China.Dissymmetric flow phenomenon in a multistrand tundish[J].Journal of University of Science and Technology Beijing,2007,14(6):490-494.
Authors:Mingmei Zhu  Guanghua Wen  Ping Tang  Yufeng Wang
Affiliation:College of Material Science and Engineering, Chongqing University, Chongqing 400044, China
Abstract:The dissymmetric flow phenomenon exists in a symmetric multistrand tundish. It was studied by the physical simulation experiment. The fundamental flow characteristic of dissymmetry was analyzed. The asymmetry of the flow field, the temperature field, and the inclusions distribution without flow-control devices (FCDs) were compared with those with FCDs. It is proved that the asymmetry of the flow and temperature field along the outlets at the long range is more obvious. The symmetric FCDs installation has a slight effect on the dissymmetric temperature field, simultaneously, the symmetry of the average residence time and the fluid flow pattern has improved, and the fluid flow in the tundish has been more reasonable. In case of a symmetric multistrand tundish having a large volume, the influence of the dissymmetric phenomenon should be considered and the flow behaviors in the whole tundish should be studied completely.
Keywords:multistrand tundish  dissymmetry  flow phenomenon  physical simulation  flow-control devices
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