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Effect of Flow Rate Controllers and their Opening Levels on Liquid Steel Flow in Continuous Casting Mold

机译:流量控制器及其开度对连铸结晶器钢水流动的影响

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摘要

The present study investigates the mold flow structure at constant throughput condition for different slide-gate and stopper rod openings by utilizing computational fluid dynamic (CFD) modeling. Detailed validation of the CFD models are conducted using available experimental data and the performances of three different turbulence models, standard k-ε, realizable k-ε and k-ω SST are compared. The constant throughput casting operations for different slide-gate and stopper rod controller openings are simulated to quantify the effect of flow controllers and their opening levels on mold flow. The results indicate that for a slide-gate controlled system, the meniscus velocities are significantly affected by the changes in the opening level. The steady state operations do not provide the same mold flow if the slide-gate opening is altered. However, for the stopper rod controlled system the stopper rod opening level changes do not affect the meniscus velocities and the flow structures within the mold.
机译:本研究通过利用计算流体动力学(CFD)建模方法研究了在恒定生产量条件下,不同滑门和塞杆开口的结晶器流动结构。使用可用的实验数据对CFD模型进行了详细的验证,并比较了三种不同湍流模型(标准k-ε,可实现的k-ε和k-ωSST)的性能。模拟了不同滑门和塞杆控制器开口的恒定通过量铸造操作,以量化流量控制器及其开口水平对结晶器流动的影响。结果表明,对于滑动门控制系统,弯月面速度受打开水平的变化影响很大。如果更改滑门开口,则稳态操作不会提供相同的模具流量。但是,对于塞杆控制系统,塞杆的开度变化不会影响弯月面的速度和模具内的流动结构。

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