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Investigation of Coke Collapse in the Blast Furnace Using Mathematical Modeling and Small Scale Experiments

机译:数学模型和小规模实验研究高炉焦炭坍塌

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摘要

Burden distribution plays a key role in controlling the gas flow conditions inside a blast furnace. The distribution of ore and coke influences the gas permeability distribution in the lumpy zone and also in the cohesive zone, where the gas flows mainly through the coke slits. Charging an ore dump on coke can sometimes cause the coke layer to collapse under the force of the heavier ore particles. This is known as 'coke collapse' or 'coke push', which results in a higher coke fraction near the center of the furnace than expected. In this work coke collapse phenomena are evaluated on model charging programs using small scale experiments and Discrete Element Modeling (DEM). DEM simulations were used to study the extent of collapse for different charging programs, and experiments were undertaken to verify the results of the simulations. The slope stability method was used to classify the collapse conditions into no collapse, impact failure or gravity failure, depending on the stability of the coke layer. The findings were also compared with results from an in-house mathematical model, which was modified to consider the effect of the collapse on the underlying layer. The corrected mathematical model was found to show results in general agreement with results from the DEM simulation.
机译:负荷分布在控制高炉内部的气流条件方面起着关键作用。矿石和焦炭的分布会影响块状区域以及粘结性区域中的气体渗透率分布,在粘结性区域中,气体主要流过焦炭缝。将矿石堆放到焦炭上有时会导致焦炭层在较重的矿石颗粒的作用下坍塌。这就是所谓的“焦炭坍塌”或“焦炭推动”,这会导致炉子中心附近的焦炭分数高于预期。在这项工作中,使用小规模实验和离散元素建模(DEM)在模型装料程序中评估了焦炭崩塌现象。 DEM仿真用于研究不同充电程序的崩溃程度,并进行了实验以验证仿真结果。根据焦炭层的稳定性,使用斜坡稳定性方法将塌陷条件分为无塌陷,冲击破坏或重力破坏。研究结果还与内部数学模型的结果进行了比较,该模型经过修改以考虑坍塌对基础层的影响。发现校正后的数学模型显示的结果与DEM仿真的结果基本一致。

著录项

  • 来源
    《ISIJ international》 |2016年第9期|1570-1579|共10页
  • 作者

    Tamoghna MITRA; Henrik SAXEN;

  • 作者单位

    Thermal and Flow Engineering Laboratory, Faculty of Science and Engineering, Abo Akademi University, Biskopsgatan 8, FI-20500 Abo, Finland;

    Thermal and Flow Engineering Laboratory, Faculty of Science and Engineering, Abo Akademi University, Biskopsgatan 8, FI-20500 Abo, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ironmaking; blast furnace; burden distribution; coke collapse; factor of safety; Discrete Element Modeling;

    机译:炼铁高炉;负担分配;焦炭崩溃安全因素;离散元建模;

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