Numerical Simulation on Syncretizing Distance of Gas Jet from Variable Angle Four-Hole Oxygen Lance for a 50 t Converter
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Numerical Simulation on Syncretizing Distance of Gas Jet from Variable Angle Four-Hole Oxygen Lance for a 50 t Converter
Special SteelVol. 35, Issue 4, Pages: 8-11(2014)
作者机构:
河北联合大学冶金与能源学院,唐山,063009
作者简介:
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Received:25 February 2014,
Online First:02 September 2022,
Published:02 September 2014
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迟洪亮, 李俊国, 付少朋, et al. Numerical Simulation on Syncretizing Distance of Gas Jet from Variable Angle Four-Hole Oxygen Lance for a 50 t Converter[J]. Special Steel, 2014, 35(4): 8-11.
DOI:
迟洪亮, 李俊国, 付少朋, et al. Numerical Simulation on Syncretizing Distance of Gas Jet from Variable Angle Four-Hole Oxygen Lance for a 50 t Converter[J]. Special Steel, 2014, 35(4): 8-11.DOI:
Numerical Simulation on Syncretizing Distance of Gas Jet from Variable Angle Four-Hole Oxygen Lance for a 50 t Converter
The gas jets of variable and non-variable angle four-hole oxygen lances for 50 t BOF have been numerically simulated by using Fluent software to study the effect of inclining angle of jet nozzles on oxygen jet flow field and syncretizing length of jet-flows. Results show that in distance near the outlet of jet-nozzle the each jet-flow is independent free-flow
with increasing distance from outlet of jet nozzle the each jet-flow continuously spreads out and merges each other into one jet-flow (stream) at certain distance; the syncretizing distance of jet-flows of non-variable angle jet nozzle A is 1. 3 m that is consistent with the cold water simulated test results in which at situation of lance level 1.3 m the spitting amount from furnace is maximum; the inclining angles of opposite angles jet hole of variable angle oxygen lances vary from lance B to lance I
and the jet-flows of these lances syncretize for two times led to abruptly reduce the furnace spitting amount ; compared with difference 1° of inclining angles
the variable angle oxygen lances with difference 0. 5° of inclining angles of opposite angles jet hole is more favorable to increase the syncretizing distance ; among the studied nine jet nozzle with inclining angles 10. 5° ~ 11.5°/12. 5°
the jet nozzle H with inclining angle 5° has maximum jet flow syncretizing distance
its theoretical furnace mouth spitting amount is lowest.