首页> 外文期刊>International communications in heat and mass transfer >Numerical Prediction On The Variation Of Temperature In The Eroded Blast Furnace Hearth With Titanium Dioxide In Hot Metal
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Numerical Prediction On The Variation Of Temperature In The Eroded Blast Furnace Hearth With Titanium Dioxide In Hot Metal

机译:铁水中二氧化钛对高炉炉膛炉内温度变化的数值预测

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摘要

This paper numerically predicts the decrease in temperature of the eroded hearth of the blast furnace with floating deadman (coke zone) case for Port Kembla no. 5 blast furnace (PKBF5) by solving the Navier-Stokes equation, the thermal-energy-balance equation with conjugated heat transfer, and the mass transfer equation with the effect of chemical reaction during tapping process at steady state. The chemical reaction is generated by titanium dioxide (TiO_2) reacting with saturated carbon in hot metal. The following calculations are done by using a commercial computational fluid dynamics (CFD) package, FLUENT (version 6.2), with a segregated model. As shown in the results, on the basis of the flow pattern of liquid iron, the inlet selection of adding TiO_2 may be far away from the taphole. The calculated temperature variation in the damaged hearth by reaction is significant, but that on the other side of the hearth without adding TiO_2 isn't influenced. Additionally, the numerical temperature data of different locations may be examined by the blast furnace operators to judge the effect of lowering temperature.
机译:本文用数值预测了Kembla No.1浮动高炉(焦炭区)情况下高炉炉膛的温度降低。 5高炉(PKBF5)通过求解Navier-Stokes方程,具有共轭传热的热能平衡方程和在稳态出钢过程中具有化学反应影响的传质方程。化学反应是由二氧化钛(TiO_2)与铁水中的饱和碳反应生成的。通过使用带有分离模型的商业计算流体力学(CFD)软件包FLUENT(版本6.2)进行以下计算。结果表明,根据铁水的流动方式,加入TiO_2的入口选择可能远离出铁口。通过反应在受损炉膛中计算出的温度变化非常明显,但不添加TiO_2的炉膛另一侧的温度变化不会受到影响。另外,高炉操作员可以检查不同位置的数值温度数据,以判断降低温度的效果。

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