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ADVANCES IN UNDERSTANDING OF PHENOMENA IN THE BLAST FURNACE HEARTH

机译:高炉炉心现象的研究进展

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摘要

An industry - university consortium was set up to develop advanced tools necessary to understanding of the various phenomena occurring in the hearth of the modern iron making blast furnace. The major driver for this work was to provide the technological support required to extend campaign life of blast furnaces, which, by current agreement is tied to the life of the furnace hearth. The hearth wear is significantly affected by the hot metal velocity, temperature distribution and refractory temperatures. Due to the difficulty in making measurements inside the hearth, novel approaches to gain a fundamental understanding of the detailed physical and chemical processes in the hearth must be developed. The approach used in this project was to develop a 3-D CFD (Computational Fluid Dynamics) model coupled with extensive validation efforts. The CFD model is being utilized (1) to understand the phenomena in the hearth, (2) to understand the impact of changes in the internal conditions of the hearth on wear patterns; and (3) to design a monitoring/controlling system for prolonging campaign. In this paper, the results will be reviewed.
机译:建立了一个工业大学联盟,以开发必要的先进工具,以了解现代炼铁高炉炉膛中发生的各种现象。这项工作的主要推动力是提供延长高炉活动寿命所需的技术支持,根据当前的协议,该寿命与高炉炉膛的寿命有关。炉膛磨损受铁水速度,温度分布和耐火温度的影响很大。由于难以在炉膛内进行测量,因此必须开发出新颖的方法来获得对炉膛内详细物理和化学过程的基本了解。该项目中使用的方法是开发3-D CFD(计算流体动力学)模型,并进行大量的验证工作。使用CFD模型(1)了解炉膛中的现象,(2)了解炉膛内部条件变化对磨损方式的影响; (3)设计监测/控制系统,以延长战役。本文将对结果进行审查。

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