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Modelling of a continuous casting mold level control system with emphasis on the pouring conditions in the submerged nozzle

机译:连铸结晶器液位控制系统的建模,重点是浸没式喷嘴的浇注条件

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This paper presents an extension of the published work by N. Kiupel et al. [1], based on project studies at the Gerhard-Mercator-Universität Duisburg in cooperation with the company HKM in Duisburg. It focuses on a subsystem of the original model considered by N. Kiupel et al. of the mold level control system. This subsystem contains the supply vessel, the submerged nozzle and the mold under different flow conditions. Two possible flow conditions are distinguished: steel casting with a continuous mass flow and steel casting with an interrupted mass flow. The reason for this distinction is that during the operation under different pouring conditions, oscillations with unknown causes occur. It is suspected that these oscillations are caused by different flow conditions in the submerged nozzle. In the first case it is assumed that the liquid steel flows in a continuous stream through the submerged nozzle, so that there is a direct mass and force connection between the supply vessel and the mold. In the second case it is assumed that the flow is interrupted and the space in between is filled with gas. The remaining part of the model has been taken from the complete model described in the literature [1]. For better understanding of the model and its function the subsystem is described within the context of the whole system, and the effects of the force connection will be illustrated by simulation results.
机译:本文介绍了N. Kiupel等人已发表论文的扩展。 [1]基于与杜伊斯堡HKM公司合作在杜哈斯堡Gerhard-Mercator-Universität杜伊斯堡大学进行的项目研究。它着重于N. Kiupel等人考虑的原始模型的子系统。模具水平控制系统。该子系统包含供应容器,浸入式喷嘴和处于不同流动条件下的模具。区分了两种可能的流动条件:具有连续质量流的铸钢和具有间断质量流的铸钢。这种区别的原因是,在不同的浇注条件下运行期间,会发生未知原因的振荡。怀疑这些振荡是由浸入式喷嘴中的不同流动条件引起的。在第一种情况下,假设钢水以连续流的形式流经浸没式喷嘴,因此在供应容器和模具之间存在直接的质量和力连接。在第二种情况下,假定流动被中断并且其间的空间充满了气体。该模型的其余部分取自文献[1]中描述的完整模型。为了更好地理解模型及其功能,在整个系统的上下文中描述了子系统,并且将通过仿真结果来说明力连接的效果。

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