Heat balance calculation for freeze lining smelting process
Authors
Manojlović, VasoKamberović, Željko
Gavrilovski, Milorad
Sokić, Miroslav

Marković, Branislav

Bugarčić, Mladen

Contributors
Raić, KarloGlišić, Dragomir
Conference object (Published version)

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Simulating the furnace processes can lead to the minimal energy loses and optimal temperature distribution through the system. Freeze lining is a result of balance between the heat input from liquid bath and heat removal from outer layer. In that manner, solid slag crust is formed with good mechanical properties. At this paper freeze lining for the plasma smelting process was simulated using COMSOL software package. For smelting material corundum with the addition of other materials was used. Smelting is possible if the heat balance is properly calculated. Colling rate will control the layer thickness and inner temperature.
Keywords:
heat balance / freeze lining / COMSOLSource:
Metallurgical & Materials Engineering Congress of South-East Europe MME SEE 2017, 2017, 55-55Publisher:
- Belgrade : Association of Metallurgical Engineers of Serbia
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Institution/Community
Institut za tehnologiju nuklearnih i drugih mineralnih sirovinaTY - CONF AU - Manojlović, Vaso AU - Kamberović, Željko AU - Gavrilovski, Milorad AU - Sokić, Miroslav AU - Marković, Branislav AU - Bugarčić, Mladen PY - 2017 UR - https://ritnms.itnms.ac.rs/handle/123456789/953 AB - Simulating the furnace processes can lead to the minimal energy loses and optimal temperature distribution through the system. Freeze lining is a result of balance between the heat input from liquid bath and heat removal from outer layer. In that manner, solid slag crust is formed with good mechanical properties. At this paper freeze lining for the plasma smelting process was simulated using COMSOL software package. For smelting material corundum with the addition of other materials was used. Smelting is possible if the heat balance is properly calculated. Colling rate will control the layer thickness and inner temperature. PB - Belgrade : Association of Metallurgical Engineers of Serbia C3 - Metallurgical & Materials Engineering Congress of South-East Europe MME SEE 2017 T1 - Heat balance calculation for freeze lining smelting process EP - 55 SP - 55 ER -
@conference{ author = "Manojlović, Vaso and Kamberović, Željko and Gavrilovski, Milorad and Sokić, Miroslav and Marković, Branislav and Bugarčić, Mladen", year = "2017", abstract = "Simulating the furnace processes can lead to the minimal energy loses and optimal temperature distribution through the system. Freeze lining is a result of balance between the heat input from liquid bath and heat removal from outer layer. In that manner, solid slag crust is formed with good mechanical properties. At this paper freeze lining for the plasma smelting process was simulated using COMSOL software package. For smelting material corundum with the addition of other materials was used. Smelting is possible if the heat balance is properly calculated. Colling rate will control the layer thickness and inner temperature.", publisher = "Belgrade : Association of Metallurgical Engineers of Serbia", journal = "Metallurgical & Materials Engineering Congress of South-East Europe MME SEE 2017", title = "Heat balance calculation for freeze lining smelting process", pages = "55-55" }
Manojlović, V., Kamberović, Ž., Gavrilovski, M., Sokić, M., Marković, B.,& Bugarčić, M.. (2017). Heat balance calculation for freeze lining smelting process. in Metallurgical & Materials Engineering Congress of South-East Europe MME SEE 2017 Belgrade : Association of Metallurgical Engineers of Serbia., 55-55.
Manojlović V, Kamberović Ž, Gavrilovski M, Sokić M, Marković B, Bugarčić M. Heat balance calculation for freeze lining smelting process. in Metallurgical & Materials Engineering Congress of South-East Europe MME SEE 2017. 2017;:55-55..
Manojlović, Vaso, Kamberović, Željko, Gavrilovski, Milorad, Sokić, Miroslav, Marković, Branislav, Bugarčić, Mladen, "Heat balance calculation for freeze lining smelting process" in Metallurgical & Materials Engineering Congress of South-East Europe MME SEE 2017 (2017):55-55.