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High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes
ESCI SJR: 0.176 SNIP: 0.48 CiteScore™: 1.3

ISSN Imprimir: 1093-3611
ISSN On-line: 1940-4360

High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes

DOI: 10.1615/HighTempMatProc.v7.i1.100
6 pages

3D MODEL OF THE ESTABLISHMENT OF A PLASMA ARC BETWEEN TWO AERIAL METALLIC ELECTRODES

B. Barthelemy
CEA/VALRHO/DEN/DIEC/SCDV/LPIC, BP17171. 30270 Bagnols sur Ceze cedex , France
C. Girold
CEA/VALRHO/DEN/DIEC/SCDV/LPIC, BP17171. 30270 Bagnols sur Ceze cedex, France
Clarisse Delalondre
Laboratoire National d'Hydraulique - EDF, 6 Quai Watier - 78400 Chatou - France
Bernard Paya
Electricite de France - R&D Division - Centre des Renardieres Route de Sens - F-77818 Moret Sur Loing Cedex - France
Jean Marie Baronnet
Laboratory of Plasma Chemistry, University of Limoges,123 av. Albert Thomas, 87060 Limoges, France

RESUMO

This paper describes the initial results of a 3D flow simulation of a molten glass bath and a transferred electric plasma arc between two aerial metallic electrodes. The calculations were performed as part of a joint CEA-EDF study. The ESTET 3.4 CFD calculation code used to simulate electric arc furnaces in the metallurgical industry was applied here to model glass melting by an oxygen transferred arc plasma in order to optimise the treatment of radioactive waste. This method could be applied to industrial or municipal waste. The high temperature obtained by the plasma allows us to bum the organic fraction of the waste and then, the mineral part of this waste is trapped in me glass melt.


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