Numerical simulation of BF ironmaking process with consideration of silica reduction
编号:38 访问权限:仅限参会人 更新:2024-04-09 22:05:49 浏览:159次 口头报告

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摘要
In an ironmaking blast furnace (BF), ferrous materials melt into liquid in cohesive zone (CZ) and penetrates through coke bed to hearth while interacting with gas and solid flow. The liquid behavior can significantly affect the bed permeability, gas and liquid distributions and associated heat and mass transfer in the lower part of BF, especially when smelting different ore types. It largely determines BF process stability. Because of harsh operating conditions, effective tools are still lacking to quantify the liquid flow and its influence on BF performance. Our study aimed to solve this problem by further developing the liquid flow model based on our recent CFD process model. Particularly, the silicon reduction and carburization occurring in BF lower part are explicitly modelled in this work. The effects of blast temperature and silica content in coke ash are investigated to validate the model applicability. Additionally, different burden distributions are tested to lower the silicon content in HM. The proposed work can provide an extended applicability to describe the silicon transfer in the BF lower part to guide practical production.
关键词
blast furnace,liquid flow,silicon transfer,CFD process model
报告人
刘彦聪
monash university

稿件作者
刘彦聪 monash university
匡世波 monash university
焦璐璐 东南大学
余艾冰 monash university
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重要日期
  • 会议日期

    05月31日

    2024

    06月03日

    2024

  • 06月03日 2024

    摘要截稿日期

  • 06月03日 2024

    初稿截稿日期

  • 06月03日 2024

    注册截止日期

主办单位
中国力学学会
计算力学专业委员会
颗粒材料计算力学专业组
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河海大学
大连理工大学
中国颗粒学会
江苏省力学学会
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