Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/27391
Title: Simulation of the solidification of the melt in the Vanyukov furnace in the case of emergency stoppage
Authors: Lisienko, V. G.
Malikov, G. K.
Morozov, M. V.
Belyaev, V. V.
Kirsanov, V. A.
Issue Date: 2013
Citation: Simulation of the solidification of the melt in the Vanyukov furnace in the case of emergency stoppage / V. G. Lisienko, G. K. Malikov, M. V. Morozov [et al.] // Russian Journal of Non-Ferrous Metals. — 2013. — Vol. 54. — № 4. — P. 287-291.
Abstract: A mathematical model of the Vanyukov furnace, which makes it possible to predict the behavior of an object in the emergency operational mode (upon the disconnection of the oxygen supply) and develop an effective system of additional heating which damps the consequences of the emergency mode and lowers the costs for the renovation of the furnace operation, is created. It is shown how solidification upon cooling the furnace with time is simulated using the enthalpy and porosity method. The mathematical model is adopted for existing production conditions, which are weakly defined. The energy characteristics of the mode for the solidifying furnace bath, which ensures its holding for a long time in the ready state to rapid firing, are found. Thus, the problem of excessively expensive furnace firing after prolonged production stoppage is solved in the conjugated statement with a calculation of the heating system of the overbath space. © 2013 Allerton Press, Inc.
Keywords: COOLING THE MELT
DISCONNECTION OF OXYGEN SUPPLY
EMERGENCY MODE
ENTHALPY AND POROSITY METHOD
GRID MODEL
MATHEMATICAL MODEL
MATHEMATICAL MODELING
VANYUKOV FURNACE
ADDITIONAL HEATING
EFFECTIVE SYSTEMS
EMERGENCY MODE
ENERGY CHARACTERISTICS
FURNACE OPERATIONS
GRID MODEL
PRODUCTION STOPPAGE
VANYUKOV FURNACE
ENTHALPY
MATHEMATICAL MODELS
POROSITY
SOLIDIFICATION
FURNACES
COOLING
ENTHALPY
HEATING
MELT
NUMERICAL MODEL
OXYGEN
POROSITY
SOLIDIFICATION
URI: http://elar.urfu.ru/handle/10995/27391
RSCI ID: 20454106
SCOPUS ID: 84883814861
WOS ID: 000324106000002
PURE ID: 899080
ISSN: 1067-8212
DOI: 10.3103/S106782121304010X
Appears in Collections:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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