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Modeling of Internal State and Performance of an Ironmaking Blast Furnace: Slot vs Sector Geometries

  • Yansong Shen
  • , Baoyu Guo
  • , Sheng Chew
  • , Peter Austin
  • , Aibing Yu
  • Monash University
  • BlueScope

科研成果: 期刊稿件文章同行评审

59 引用 (Scopus)

摘要

Mathematical modeling is a cost-effective method to understand internal state and predict performance of ironmaking blast furnace (BF) for improving productivity and maintaining stability. In the past studies, both slot and sector geometries were used for BF modeling. In this paper, a mathematical model is described for simulating the complex behaviors of solid, gas and liquid multiphase flow, heat and mass transfers, and chemical reactions in a BF. Then the model is used to compare different model configurations, viz. slot and sector geometries by investigating their effects on predicted behaviors, in terms of two aspects: (i) internal state including cohesive zone, velocity, temperature, components concentration, reduction degree, gas utilization, and (ii) performance indicators including liquid output at the bottom and gas utilization rate at the furnace top. The comparisons show that on one hand, predictions of internal state of the furnace such as fluid flow and thermo-chemical phenomena using the slot and sector geometries are qualitatively comparable but quantitatively different. Both sector and slot geometries give a similar cohesive zone shape but the sector geometry gives a higher cohesive zone near the wall and faster reduction. On the other hand, the two geometries can produce similar performance indicators including gas utilization at the furnace top and liquid output at the bottom. Such a study is useful in selecting geometry for numerically examining BF operation with respect to different needs.

源语言英语
页(从-至)1052-1062
页数11
期刊Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science
47
2
DOI
出版状态已出版 - 1 4月 2016

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