Numerical simulation of flow and temperature distribution in a transferred argon arc plasma enclosed in a chamber.
Author:
Affiliation:
1. Institute for Advanced Materials Processing, Tohoku University
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
http://www.jstage.jst.go.jp/article/jcej/29/3/29_3_508/_pdf
Reference24 articles.
1. Boulos, M. I., P. Fauchais and E. Pfender; Thermal Plasmas, Vol. 1, p. 388–392, Plenum Press, New York (1994)
2. Modeling and experimental study of a transferred arc stabilized with argon and flowing in a controlled-atmosphere chamber filled with argon at atmospheric pressure
3. Metal vapors in gas tungsten arcs: part i. spectroscopy and monochromatic photography
4. Formation of aluminum nitrides in thermal plasmas
5. Evans, D. L. and R. S. Tankin; “Measurement of Emission and Absorption of Radiation by an Argon Plasma,” Phys. Fluids, 10, 1137–1144 (1967)
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1. Modelling of Laminar Plasma Jet Impinging on a Flatplate with Approximate Box Relaxation Method;Plasma Science and Technology;1999-12
2. Numerical Analysis of the Flow Characteristics and Temperature Distribution in Metal Beads Subjected to Transferred Arc Plasma Impingement.;ISIJ International;1997
3. Prediction of Surface Temperature on Metal Beads Subjected to Argon-Hydrogen Transferred Arc Plasma Impingemen.;ISIJ International;1997
4. Modeling of the Flow, Temperature and Concentration Fields in an Arc Plasma Reactor with Argon-Nitrogen Atmosphere.;ISIJ International;1996
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