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Modeling Study of the Influence of Subflux Controller of Turbulence on the Molten Steel Flow in Tundish

机译:湍流子通量控制器对中间包钢水流动影响的建模研究

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The objective of the study is to diagnose the current condition of the two-strand tundish. The investigated object is a "T"-type tundish. The nominal capacity of the tundish is 7.5 tonne of liquid steel. By the mathematical simulation, fluid flow and heat transfer of molten-steel in a tundish of a billet caster under different conditions (bare tundish and tundish with flow control device) are analyzed. Three variants of subflux controller of turbulence configurations in the tundish are tested. Numerical simulations of are carried out with the finite-volume commercial code FLUENT using the realizable k-£ turbulence model. Liquid steel velocity, temperature, turbulent kinetic energy and Residence Time Distribution (RTD) characteristic have been obtained as a result of mathematical calculations. The RTD curve is used to estimate the different volumes such as plug volume, dead volume and mixed volume inside the tundish. The ratio of mixed to dead volume, which indicates the mixing capability of a tundish, is estimated.
机译:该研究的目的是诊断两链中间包的当前状况。被调查对象是“ T”型中间包。中间包的标称容量为7.5吨液态钢。通过数学模拟,分析了钢坯连铸机中间包在不同条件下(裸包和带流量控制装置的中间包)的流体流动和传热。测试了中间包中湍流配置的Subflux控制器的三种变体。使用可实现的k-£湍流模型,用有限体积的商业代码FLUENT进行的数值模拟。数学计算的结果是获得了钢水的速度,温度,湍动能和停留时间分布(RTD)特性。 RTD曲线用于估计中间包内的不同体积,例如塞子体积,死体积和混合体积。估计混合体积与死体积的比率,该比率指示中间包的混合能力。

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