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Physical and numerical modelling of a non-stationary steel flow through a subentry shroud with an inner metering nozzle

机译:非稳态钢流通过带内计量喷嘴的子入口罩的物理和数值模拟

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摘要

The paper presents new knowledge about physical and numerical modelling of a non-stationary steel flow into a mould througha subentry shroud with an inner, pressed metering nozzle. The physical and numerical modelling was realized under theconditions of the Department of Metallurgy and Foundry at VSB-Technical University of Ostrava. A special type of the subentryshroud is used during continuous casting of steel in Tøinecké `elezárny, a.s. During continuous casting of steel, twounfavourable phenomena were observed. In the first case, it was not possible to increase the casting speed, though the diameterof the metering nozzle was extended. In the second case, a fluctuation of the casting speed among individual casting strands wasdetected. These two problems did not allow an improvement of the performance of the casting machine. Therefore, the physicaland numerical modelling was performed. Attention was focused on the verification of the effect of the inner diameter of thenozzle body and internal diameter of the metering nozzle on the resulting volume flow rates. Four diameters of the meteringnozzle – (16; 17; 17.5; 18) mm – were tested. The physical modelling was done on a 1 : 1 model constructed from Plexiglas.The numerical modelling was realized in the ANSYS FLUENT software. On the basis of the results of the modelling study andin cooperation with the VESUVIUS company, a new type of the profile of the subentry shroud with a metering nozzle wasdesigned. The first experimental results in the steel plant led to an increase in the productivity of the continuous-castingmachine.
机译:本文介绍了有关非平稳钢流通过带有内部加压计量喷嘴的子入口罩进入模具的物理和数值模型的新知识。物理和数值模拟是在俄斯特拉发VSB技术大学冶金和铸造系的条件下实现的。在Tøinecké`elezárny,a.s.的钢水连铸过程中,使用了一种特殊类型的副罩。在钢的连续铸造过程中,观察到两个不利的现象。在第一种情况下,尽管延长了计量喷嘴的直径,却无法提高铸造速度。在第二种情况下,检测到各个铸坯之间的铸造速度波动。这两个问题不能改善铸造机的性能。因此,进行了物理和数值建模。注意力集中在验证喷嘴主体的内径和计量喷嘴的内径对所得体积流量的影响上。测试了计量喷嘴的四个直径–(16; 17; 17.5; 18)mm –。物理建模是在由Plexiglas构建的1:1模型上完成的。数值建模是在ANSYS FLUENT软件中实现的。根据建模研究的结果,并与VESUVIUS公司合作,设计了一种新型的带计量喷嘴的子入口罩轮廓。钢铁厂的第一个实验结果导致连续铸造机的生产率提高。

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