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Numerical Prediction of Iron Flow and Bottom Erosion in the Blast Furnace Hearth

机译:高炉炉膛铁水流动和炉底侵蚀的数值预测

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摘要

The blast furnace (BF) campaign life, which is limited by the hearth erosion, will be decisive for the process to maintain its dominance in ore-based iron production, so timely prediction of the hearth erosion and proper measures to protect the hearth are important issues. The erosion at the hearth bottom has not received much attention, even though the region is believed to be the most vulnerable part of the hearth. A computational fluid dynamic (CFD) model has been developed to deepen the understanding of iron flow and refractory erosion at the bottom of the hearth. Key boundary and internal conditions, such as slag-iron interface and dead man state, are provided by a BF drainage model which reproduces the tapping process. Simulations with the CFD model illustrate how different factors affect the flow pattern, hearth erosion profile, and bottom breakage ratio. It is shown that the dead man state plays an important role for the flow behavior and erosion conditions in the hearth. The model is demonstrated to predict two erosion types that are commonly encountered in practice.
机译:受炉床侵蚀限制的高炉运动寿命对于保持其在矿石铁生产中的优势地位起着决定性的作用,因此及时预测炉膛腐蚀并采取适当措施保护炉床非常重要。问题。尽管人们认为该地区是炉膛中最脆弱的部分,但炉膛底部的侵蚀并未引起太多关注。已经开发了计算流体动力学(CFD)模型,以加深对炉底铁流和耐火材料侵蚀的了解。高炉排水模型提供了关键的边界和内部条件,例如炉渣-铁界面和死人状态,该模型再现了出钢过程。 CFD模型的仿真说明了不同因素如何影响流型,炉膛侵蚀曲线和底部破损率。结果表明,死人状态对炉膛中的流动行为和侵蚀条件起着重要作用。该模型可以预测实际中经常遇到的两种侵蚀类型。

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