Recombination coefficient of atomic oxygen on ceramic materials in a CO2 plasma flow for the simulation of a Martian entry

Author:

Balat-Pichelin M.,Iacono J.,Boubert P.

Funder

Centre National d׳Etudes Spatiales

Centre National de la Recherche Sientifique

Publisher

Elsevier BV

Subject

Materials Chemistry,Surfaces, Coatings and Films,Process Chemistry and Technology,Ceramics and Composites,Electronic, Optical and Magnetic Materials

Reference34 articles.

1. A.F. Kolesnikov, M.I. Yakushin, Heat transfer simulation and surface catalycity prediction at the Martian atmosphere entry conditions, In: Proceedings of the AIAA 9th International Space Plans Hypersonic Systems Technologies Conference, 1–5 November, Norfolk, Virginia, USA, 1999.

2. Study of quartz surface catalycity in dissociated carbon dioxide subsonic flows;Kolesnikov;J. Spacecr. Rocket.,2000

3. A.F. Kolesnikov, A.N. Gordeev, S.A. Vasil’evskii, Heat transfer in sub- and supersonic nonequilibrium jets of carbon dioxide plasmas, In: Proceedings of the 7th European Symposium Aerothermodynamics, ESA SP 692, August 2011.

4. A.F. Kolesnikov, A.N. Gordeev, S.A. Vasilevskii, Study of heat transfer and predicting surface catalycity for metals and quartz for Exomars entry conditions, In: Proceedings of the 17th International Conference Methods Aerophysical Research, Novosibirsk, Russia, July 2014, paper no. 269, p. 7.

5. V. Kovalev, N. Afonina, V. Gromov, Effect of physical adsorption on heat fluxes to catalytic surfaces in carbon dioxide, Rarefied Gas Dynamics, CP 663, 2003, pp. 1001–1007.

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