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Gas-liquid-powder flow in moving particles: Operational and non-operational regimes

  • T. S. Pham
  • , D. Pinson
  • , A. B. Yu
  • , P. Zulli
  • University of New South Wales
  • BHP Billiton

Research output: Contribution to journalConference articlepeer-review

20 Scopus citations

Abstract

An experimental study has been carried out for gas-liquid-powder-solid four-fluid flow in a packed bed. This system simulates the complex flow conditions in an ironmaking blast furnace which involves the upward flow of gas and unburnt coal/char and the downward flow of coke and molten iron and slag. It is shown that depending on the flow conditions, both steady and unsteady state flows can be observed, giving the so-called operational and non-operational regimes. The effects of solid, liquid, powder and gas flow conditions on the two regimes have been quantified. The non-operational regime stems from the flooding caused by high superficial gas and liquid velocities, and powder mass flux and/or hanging caused by high powder mass flux and low gas velocity. The operational regime expands with an increase in solid velocity, and contracts with an increase in gas and liquid velocities and/or powder mass flux.

Original languageEnglish
Pages (from-to)5339-5345
Number of pages7
JournalChemical Engineering Science
Volume54
Issue number21
DOIs
StatePublished - Nov 1999
EventProceedings of the 1999 4th International Conference on Gas-Liquid and Gas-Liquid-Solid Reactor Engineering - Delft, Neth
Duration: 23 Aug 199925 Aug 1999

Keywords

  • Blast furnace
  • Moving bed
  • Multiphase flow
  • Pulverised coal injection

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