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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Hydrodynamic Analysis of the Flow inside the Submerged Entry Nozzle
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Hydrodynamic Analysis of the Flow inside the Submerged Entry Nozzle

机译:浸没进入喷嘴内流动的流体动力学分析

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摘要

The quality of steel produced by continuous casting depends mainly on the characteristics of the liquid steel flow pattern within the mold. This pattern depends on the flow dynamics of the nozzle that is immersed in liquid steel. This work characterizes the fluid dynamics within two separate submerged entry nozzle models with a square cross section bore. The Froude similarity criterion and water as working fluid have been used. The models consist of a square-shaped tube with one inlet and two lateral squared exits at the bottom. To enhance the flow visualization, the models do not have exit ports. Moreover, one of the models has a “pool,” a volume at the bottom, and the other prescinds of it. The geometrical parameters and operational conditions of physical experiments were reproduced in the numerical simulations. The turbulence model used in this work is large eddy simulation (LES) with dynamic k-equation filtering. It was found that transient numerical simulations reproduce the dynamic nature of the internal flow pattern seen in physical experiments. The results show that the flow pattern within the pool nozzle is defined by only one large vortex; on the other hand, in the nozzle, without the pool, the flow pattern achieves a complex behavior characterized by two small vortexes. This study will allow to build nozzles that produce a symmetric, regular fluid flow pattern inside the mold, which leads to improvements on the process such as low energy consumption and finally in cost reductions.
机译:连续铸造生产的钢的质量主要取决于模具内液体钢流动图案的特性。该模式取决于浸入液钢中的喷嘴的流动动力学。这项工作在两个独立的浸没式入口喷嘴模型中表征了流体动力学,具有方形横截面孔。已经使用FRoude相似性标准和水作为工作流体。该型号由方形管组成,底部有一个入口和两个横向平方排出。为了增强流量可视化,模型没有退出端口。此外,其中一个型号具有“池”,底部的卷,另一个模型中的卷。在数值模拟中再现物理实验的几何参数和操作条件。本作工作中使用的湍流模型是具有动态k等式滤波的大型涡流模拟(LES)。发现瞬态数值模拟再现物理实验中所示的内部流动模式的动态性质。结果表明,池喷嘴内的流动图案仅由一个大涡流定义;另一方面,在没有池的喷嘴中,流动模式实现了具有两个小涡流的复杂行为。该研究将允许构建模具内部产生对称,规则流体流动图案的喷嘴,这导致改善诸如能量消耗的过程,最终降低成本。

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