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首页> 外文期刊>Archives of Metallurgy and Materials >Influence of Hydrodynamic Structure on Mixing Time of Alloy Additions with Liquid Steel in One Strand Tundish
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Influence of Hydrodynamic Structure on Mixing Time of Alloy Additions with Liquid Steel in One Strand Tundish

机译:一股中间包中流体动力学结构对合金与钢液混合时间的影响

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The knowledge of the hydrodynamic pattern aids in designing new and modernizing existing tundishes. The device under examination is an one-strand tundish of a capacity of 30 Mg. Computer simulation of the liquid steel flow, tracer and alloy addition behaviour in turbulent motion conditions was done using the Ansys-Fluent? computer program. The hydrodynamic conditions of steel flow were determined based on the distribution of the characteristics of tundish liquid steel residence time distribution (RTD). The alloy addition was introduced to the liquid steel by the pulse-step method. Based on computer simulations carried out, steel flow fields and RTD and mixing curves were obtained, and the shares of stagnant volume flow and active flow and the mixing time were computed. Dispersion of the alloy addition in liquid steel during its flow through the tundish is a dynamic process which is determined by the hydrodynamic conditions occurring in the tundish working space.
机译:流体动力学模式的知识有助于设计新的和现代化的隧道。被检查的设备是容量为30 Mg的单链中间包。使用Ansys-Fluent?对湍流条件下的钢水流动,示踪剂和合金添加行为进行了计算机模拟。计算机程序;电脑程序。根据中间包钢液停留时间分布(RTD)的特征分布确定钢流的流体力学条件。通过脉冲步进法将合金​​添加物引入到钢水中。在计算机模拟的基础上,获得了钢的流场,热电阻和混合曲线,并计算了停滞体积流量和有效流量的比例以及混合时间。合金添加物在流经中间包的过程中在钢液中的分散是一个动态过程,该过程由中间包工作空间中发生的流体动力学条件决定。

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