Extensive Analysis of Multi Strand Billet Caster Tundish Using Numerical Technique

R. Agarwal, M. Singh, Ram Kumar, B. Ghosh, S. Pathak
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引用次数: 5

Abstract

Continuous casting of steel involving different grades in the same casting sequence remains a challenge to billet caster operators. The intermixed composition obtained during the grade change does not meet the specification of either grade and must be downgraded. Incorrect identification of this intermixed region may result in non-conforming products reaching the customer. In this study, a numerical model based on CFD (computational fluid dynamics approach) has been developed which predicts the start and end of the intermixed composition and the tonnage to be downgraded under different casting conditions. This model was validated and the results were in good agreement with the actual plant data for a 6-strand billet caster at LD-1 of TATA Steel, India. This model is used to calculate transition tonnage for different scenarios, e.g. when one of the outermost strands is not functional or some combinations are not functional and varying casting speed during operation. Furthermore, impact of different design of baffles on performance of Tundish has been evaluated to find a way to reduce transition or intermixed composition.
用数值技术对多股方坯连铸中间包的扩展分析
对方坯连铸机操作员来说,在同一铸造顺序中连续铸造不同等级的钢仍然是一个挑战。在等级变化过程中获得的混合成分不符合任何一个等级的规范,必须降级。对该混合区域的错误识别可能导致不合格产品到达客户手中。在这项研究中,开发了一个基于CFD(计算流体动力学方法)的数值模型,该模型预测了混合成分的开始和结束以及在不同铸造条件下要降级的吨位。对该模型进行了验证,结果与印度塔塔钢铁公司LD-1 6股方坯连铸机的实际数据吻合良好。该模型用于计算不同情况下的过渡吨位,例如,当最外层钢绞线之一不起作用或某些组合不起作用时,以及在运行过程中改变铸造速度时。此外,还评估了不同挡板设计对中间包性能的影响,以找到减少过渡或混合成分的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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