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Numerical Analysis of Coupled Turbulent Flow and Macroscopic Solidification in a Billet Continuous Casting Mould with Electromagnetic Stirring

机译:电磁搅拌钢坯连铸结晶器内湍流与宏观凝固耦合的数值分析

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Mould electromagnetic stirrers (M-EMS) have played an increasingly important role in improving inner quality of special steel billet. A coupled three-dimensional numerical simulation of the electromagnetic field, flow field and temperature distribution in the mold with M-EMS for billet continuous casting was carried out based on the finite element method. The influence of the current and frequency of M-EMS on the flow field and temperature distribution was discussed. According to the simulation results, with the increase of the current, the steady flow became unstable accompanying with the bias flow, and the temperature distribution was unsymmetrical. However, the effect of the frequency on flow field was exactly opposite compared with the current. The significant swirl flow with M-EMS prevented the superheated jet moving downward and weakened the invasion depth of the jet, and thus the location of the hot zone in the mould moved up evidently.
机译:模具电磁搅拌器(M-EMS)在改善特殊钢坯的内部质量方面起着越来越重要的作用。基于有限元方法,采用M-EMS技术对连铸坯进行了电磁场,流场和温度分布的三维耦合数值模拟。讨论了M-EMS的电流和频率对流场和温度分布的影响。根据仿真结果,随着电流的增加,稳定流与偏流一起变得不稳定,温度分布不对称。但是,与电流相比,频率对流场的影响正好相反。 M-EMS产生的明显涡流阻止了过热射流向下移动并削弱了射流的侵入深度,因此模具中热区的位置明显向上移动。

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