Three-dimensional modelling of in-furnace coal/coke combustion in a blast furnace

  • Y. S. Shen
  • , B. Y. Guo
  • , A. B. Yu
  • , P. R. Austin
  • , P. Zulli

Research output: Contribution to journalArticlepeer-review

183 Scopus citations

Abstract

A three-dimensional mathematical model of the combustion of pulverized coal and coke is developed. The model is applied to the region of lance-blowpipe-tuyere-raceway-coke bed to simulate in-furnace phenomena of pulverized coal injection in an ironmaking blast furnace. The model integrates not only pulverized coal combustion model in the blowpipe-tuyere-raceway-coke bed but also coke combustion model in the coke bed. The model is validated against the measurements under different conditions. The comprehensive in-furnace phenomena are investigated in the raceway and coke bed, in terms of flow, temperature, gas composition, and coal burning characteristics. The underlying mechanisms for the in-furnace phenomena are also analysed. The simulation results indicate that it is important to include recirculation region in the raceway and the coke bed reactions for better understanding in-furnace phenomena. The model provides a cost-effective tool for understanding and optimizing the in-furnace flow-thermo-chemical characteristics of the PCI operation in full-scale blast furnaces.

Original languageEnglish
Pages (from-to)728-738
Number of pages11
JournalFuel
Volume90
Issue number2
DOIs
StatePublished - Feb 2011

Keywords

  • Blast furnace lower zone
  • In-furnace
  • Mathematical modelling
  • Pulverized coal injection

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