Nonequilibrium vibrational-chemical kinetics and heat transfer in an O2/O mixture near the surface of a space vehicle under reentry conditions are studied. Vibration-translation, vibration-vibration energy exchange, dissociation-recombination processes in the gas phase as well as heterogeneous recombination, dissociation, and deactivation of vibrational states on a silica surface are taken into account. The effect of nonequilibrium kinetics and surface catalysis on the total heat flux and averaged dissociation-rate coefficients is examined. It is shown that both heterogeneous recombination and dissociation on the surface must be incorporated in the kinetic scheme. The contribution of thermal conductiviy, thermal and mass diffusion, and vibrational energy diffusion to the heat transfer is evaluated. In particular, vibrational energy diffusion near the surface is found to play an important role.

Nonequilibrium kinetics and heat transfer in O2/O mixtures near catalytic surfaces

Armenise I;
2002

Abstract

Nonequilibrium vibrational-chemical kinetics and heat transfer in an O2/O mixture near the surface of a space vehicle under reentry conditions are studied. Vibration-translation, vibration-vibration energy exchange, dissociation-recombination processes in the gas phase as well as heterogeneous recombination, dissociation, and deactivation of vibrational states on a silica surface are taken into account. The effect of nonequilibrium kinetics and surface catalysis on the total heat flux and averaged dissociation-rate coefficients is examined. It is shown that both heterogeneous recombination and dissociation on the surface must be incorporated in the kinetic scheme. The contribution of thermal conductiviy, thermal and mass diffusion, and vibrational energy diffusion to the heat transfer is evaluated. In particular, vibrational energy diffusion near the surface is found to play an important role.
2002
Istituto di Nanotecnologia - NANOTEC
16
238
244
kinetics
Re-entry
Shuttle
Boundary layer
aerospace
This represents the most advanced model for re-entry problems. This topics is supported by differerent agencies as ASI (Agenzia Spaziale Italiana), ESA (European Space Agency) and private companies such as ALTA s.p.a. and CIRA s.p.a. It is linked to "Non-equilibrium vibrational kinetics of air hitting a catalytic SiO2 surface", J. of Spacecraft and Rockets, Vol. 38, 482-487, 2001.Impact Factor: 1.052 (Note that this impact factor is one of the highest in the aerospace field).
4
info:eu-repo/semantics/article
262
Kustova, E; Nagnibeda, E; Armenise, I; Capitelli, M
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/38361
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