Design, integration and preliminary results of the IXV Catalysis experiment

Author:

Viladegut AlanORCID,Panerai F.,Chazot O.,Pichon T.,Bertrand P.,Verdy C.,Coddet C.

Publisher

Springer Science and Business Media LLC

Subject

Space and Planetary Science,Aerospace Engineering

Reference18 articles.

1. Fay, J.A., Riddell, F.R.: Theory of stagnation point heat transfer in dissociated air. J. Aeronaut. Sci. 25, 73–85 (1958)

2. Marschall, J., MacLean, M.: Finite-rate surface chemistry model, I: Formulation and reaction system examples. In: AIAA 42nd Thermophysics Conference. 27–30 June, Honolulu, Hawaii (2011). AIAA 2011-3783

3. Marschall, J., MacLean, M.: Finite-Rate surface chemistry model, II: Coupling to viscous navier-stokes code. In: AIAA 42nd Thermophysics Conference. 27–30 June, Honolulu, Hawaii (2011). AIAA 2011-3784

4. Stewart, D.A., Rakich J.V., Lanfranco, M.J.: Catalytic surface effects experiment on the space shuttle. In: AIAA 16th Thermophysics Conference. 23–25 June, Palo Alto, California (1981). AIAA 81-1143

5. Stewart, D.A., Kolodziej, P.: Wall catalysis experiment on AFE. In: AIAA Thermophysics, Plasmadynamics and Lasers Conference. 27–29 June, San Antonio, Texas (1988). AIAA 88-2674

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