DocumentCode :
619386
Title :
Simulation mathematical model for granular material thermal treatment
Author :
Kostial, Imrich ; Spisak, Jan ; Mikula, Jan ; Pol´cova, Katarina Mikulova ; Truchly, Martin
Author_Institution :
BERG Fac., Tech. Univ. of Kosice, Kosice, Slovakia
fYear :
2013
fDate :
26-29 May 2013
Firstpage :
150
Lastpage :
153
Abstract :
In the last years new technologies in the area of granular materials thermal treatment have been developed. Basic improvement was achieved in significant increasing of heat exchange area, heat distribution and in the hydrodynamics. Development and operation of this thermal apparatus is based on physical and mathematical modelling, which can significantly contribute to acquire required critical knowledge. For lumpy and granular material thermal treatment the approximate mathematical model based on elementary balance method was developed. Model adequacy and complexity is crucial part of generation of the effective VR system. One of the possibilities to master this difficulty is generation of the hierarchical simulation models. Presented system consists of the following discriminations levels: Production line, technological aggregate, aggregate components, processes. The production line is of granular materials thermal treatment. Regarded technological aggregates are rotary furnace, shaft furnace, microfluid furnace and the furnace in compact thin layer. The modelled processes are gas flow, material flow, combustion, heating, cooling, drying, condensation, calcinations and sintering. Models are part of the developed VR system.
Keywords :
approximation theory; calcination; combustion; condensation; cooling; drying; flow simulation; furnaces; granular flow; heat transfer; heating; hydrodynamics; microfluidics; sintering; VR system; aggregate components; approximate mathematical model; calcinations; combustion; condensation; cooling; discriminations levels; drying; elementary balance method; gas flow; granular material thermal treatment; heat distribution; heat exchange area; heating; hierarchical simulation models; hydrodynamics; lumpy material thermal treatment; material flow; microfluid furnace; model adequacy; model complexity; physical modelling; production line; rotary furnace; shaft furnace; simulation mathematical model; sintering; technological aggregate; thermal apparatus; Cooling; DH-HEMTs; Fuels; Furnaces; Materials; Mathematical model; Shafts; elementary balance; high revolution rotary furnace; mathematical model;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Carpathian Control Conference (ICCC), 2013 14th International
Conference_Location :
Rytro
Print_ISBN :
978-1-4673-4488-3
Type :
conf
DOI :
10.1109/CarpathianCC.2013.6560528
Filename :
6560528
Link To Document :
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