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Electromagnetic processing by induction of liquid non-ferrous metals

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

The paper deals with a concise overview of advanced electromagnetic technological processes based on induction processing phenomena in liquid conductive environment. All described devices were elaborated at the Faculty of Material Sciences and Metallurgy of the Silesian University of Technology in Poland. A special emphasis was put on description of magnetohydrodynamic technologies investigated not only theoretically but also by experiment at especially built laboratory and/or industrial stands. Advanced numerical methods were used for coupled modeling of multi-physic phenomena. The modeling was extremely complicated because of necessity to take into consideration at least triply coupled physical fields: electromagnetic, temperature and flow. Selected magnetohydrodynamic technologies like: stationary and continual electromagnetic stirring of molten steel and transportation of non-ferrous metals were described. Final conclusions were formulated.

Original languageEnglish
Title of host publicationMicrowave and RF Power Applications
Subtitle of host publicationProceeding of the 13th International Conference on Microwave and Radio Frequency Heating, AMPERE 2011
PublisherEditions Cepadues
Pages492-495
Number of pages4
ISBN (Print)9782854289787
Publication statusPublished - 2011
Event13th International Conference on Microwave and Radio Frequency Heating, AMPERE 2011 - Toulouse, France
Duration: 5 Sept 20118 Sept 2011

Publication series

NameMicrowave and RF Power Applications: Proceeding of the 13th International Conference on Microwave and Radio Frequency Heating, AMPERE 2011

Conference

Conference13th International Conference on Microwave and Radio Frequency Heating, AMPERE 2011
Country/TerritoryFrance
CityToulouse
Period5/09/118/09/11

Keywords

  • Coupled problems electromagnetic field
  • Electromagnetic stirring
  • Induction heating

ASJC Scopus subject areas

  • Radiation

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