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首页> 外文期刊>Archives of Metallurgy and Materials >Numerical and Physical Parametric Analysis of a SEN with Flow Conditioners in Slab Continuous Casting Mold
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Numerical and Physical Parametric Analysis of a SEN with Flow Conditioners in Slab Continuous Casting Mold

机译:板坯连铸结晶器内流动调节器的数值和物理参数分析。

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摘要

Some of the most recent technologies that improves the performance in continuous casting process has installed infrastructure outside the mold to modify the natural fluid flow pattern to obtain a quasi-steady condition and promote a uniform solidified shell of steel. The submerged entry nozzle distributes the liquid steel in the mold and can be used to obtain the flow symmetry condition with external geometry improvements. The fluid flow conditioners were located near the outlet ports of the nozzle. The aim of the modifiers is to impose a pseudo symmetric pattern in the upper zone of the mold by inhibiting the fluid exchange between the zones created by conditioners. This work evaluates the effect of the thickness and length of the fluid-flow modifiers on the overall performance of the submerged nozzle. These properties of the fluid-flow modifiers were normalized based on two of the geometric dimensions of the standard equipment. Numerical and physical simulations suggest that the flow modifier should be as thin as possible.
机译:一些改善连续铸造性能的最新技术已在铸模外部安装了基础设施,以修改自然流体的流型以获得准稳态条件并促进钢的均匀凝固壳。浸入式注嘴将液态钢分布在模具中,可用于通过改进外部几何形状获得流动对称条件。流体调节器位于喷嘴的出口附近。改性剂的目的是通过抑制调节剂产生的区域之间的流体交换,在模具的上部区域施加伪对称图案。这项工作评估了流体流量调节剂的厚度和长度对浸没式喷头整体性能的影响。流体流量调节器的这些属性基于标准设备的两个几何尺寸进行了归一化。数值和物理模拟表明,流量调节器应尽可能薄。

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