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Improving the quality of alumina-containing sinter using water-cooled furnace shell
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This article deals with the use of computer modeling to develop technical
solutions to ensure better quality of alumina-containing sinter. The
simulation accounted for the influence of the feed materials on the thermal
processes in the furnace. The energy balance (including thermal conductivity,
heat convection and radiant heat exchange) was solved assuming steady state.
A good correlation was observed for the actual and calculated temperatures of
the solids and gases, with less than 15% discrepancy. Using the model of the
furnace investigated the possibility of lowering the temperature of sintering
by removing heat from the outside of the furnace shell. To reduce the
sintering temperature to 1000 ?C length of the refractory lined steel is 5 m,
the height of the lining should not exceed - 0.06 m, the required rate of
cold water - 54.7 m3/h
Title: Improving the quality of alumina-containing sinter using water-cooled furnace shell
Description:
This article deals with the use of computer modeling to develop technical
solutions to ensure better quality of alumina-containing sinter.
The
simulation accounted for the influence of the feed materials on the thermal
processes in the furnace.
The energy balance (including thermal conductivity,
heat convection and radiant heat exchange) was solved assuming steady state.
A good correlation was observed for the actual and calculated temperatures of
the solids and gases, with less than 15% discrepancy.
Using the model of the
furnace investigated the possibility of lowering the temperature of sintering
by removing heat from the outside of the furnace shell.
To reduce the
sintering temperature to 1000 ?C length of the refractory lined steel is 5 m,
the height of the lining should not exceed - 0.
06 m, the required rate of
cold water - 54.
7 m3/h.
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