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High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes
SJR: 0.137 SNIP: 0.341 CiteScore™: 0.43

ISSN Imprimir: 1093-3611
ISSN En Línea: 1940-4360

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

DOI: 10.1615/HighTempMatProc.v15.i1.10
pages 1-6

RADIATIVE AND TRANSPORT PROPERTIES IN AR-H2-CU MIXTURES AT ATMOSPHERIC PRESSURE

Y. Cressault
Centre de Physique des Plasmas et de leurs Applications de Toulouse (CPAT) UMR n° 5002 − Université Paul Sabatier, 118 Route de Narbonne F31062 Toulouse Cedex 4 - France
Alain Gleizes
Centre de Physique des Plasmas et de leurs Applications de Toulouse (CPAT) UMR n° 5002 − Université Paul Sabatier, 118 Route de Narbonne F31062 Toulouse Cedex 4 - France

SINOPSIS

In this work, we report the calculation of the radiative and transport properties in Ar-H2-Cu mixtures. The plasma is supposed to be in local thermodynamic equilibrium (LTE) at atmospheric pressure, for temperatures between 300 and 25000 K. In the first part, we present the bases of the study with the composition and thermodynamic properties for this type of mixture. In the second part, we propose to calculate radiative properties with two methods which are net emission coefficient in an isothermal and homogeneous medium and mean absorption coefficients based on the carving of the spectrum in some interval strips. Finally, for various mixtures, we report our results of the transport coefficients acquired by the method of Chapman-Enskog.

REFERENCIAS

  1. Boulos, M. I., Fauchais, P., and Pfender, E., Thermal Plasmas-Fundamentals and Applications.

  2. Aubreton, J. and Fauchais, P., Influence des potentiels d'interaction sur les proprietes de transport des plasmas thermiques: Exemple d'application le plasma argon hydrogene a la pression atmospherique.

  3. Mostaghimi-Tehrani, J. and Pfender, E., Effects of metallic vapor on the properties of an argon arc plasma.

  4. Chervy, B., Dupont, O., Gleizes, A., and Krenek, P., The influence of the cross section of the electron-copper atom collision on the electrical conductivity of Ar-Cu and SF6-Cu plasmas.

  5. Erraki, A., Naghizadeh-Kashani, Y., Cressault, Y., and Gleizes, A., Int. Symp. Plasma Chem.

  6. Hischfelder, J. O., Curtis, C. F., and Bird, R. B., Molecular Theory Of Gases And Liquids.

  7. Chapman, S. and Cowling, T., The Mathematical Theory Of Non Uniform Gasess.


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