Catalytical surface boundary conditions for Martian atmospheric entry
Fundamentalʹnaâ i prikladnaâ matematika, Tome 8 (2002) no. 1, pp. 61-69.

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Boundary conditions for a catalytic surface in a dissociated Martian atmosphere are obtained on the basis of ideally-adsorbed Langmuir theory. The reaction based on Eley–Rideal shock mechanism and the Langmuir–Hinshelwood reaction based on the recombination of two adsorbed species are taken into account.
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V. L. Kovalev. Catalytical surface boundary conditions for Martian atmospheric entry. Fundamentalʹnaâ i prikladnaâ matematika, Tome 8 (2002) no. 1, pp. 61-69. http://geodesic.mathdoc.fr/item/FPM_2002_8_1_a5/

[1] Polyanskii O. Yu., Kuznetsov M. M., Menshikova V. L. i dr., Vliyanie svoistv realnogo gaza na aerodinamicheskie i teplovye kharakteristiki giperzvukovykh letatelnykh apparatov, TsAGI. ONTI. Obzory. No 676, 1987 | MR | Zbl

[2] Chen Y.-K., Henline W. D., Stewart D. A., Candler G. V., “Navier–Stokes solution with surface catalysis for Martian atmospheric entry”, Journal of Spacecraft and Rockets, 30:1 (1993), 32–42 | DOI

[3] Mitcheltree R. A., Ggnoffo P. A., “Wake flow about the Mars Pathfinder entry vehicle”, Journal of Spacecraft and Rockets, 32:5 (1995), 771–776 | DOI

[4] Gupta R. N., Lee K. P., Scott C. D., “Aerotermal study of Mars Pathfinder aeroshell”, Journal of Spacecraft and Rockets, 33:1 (1996), 61–69 | DOI

[5] Kovalev V. L., Suslov O. N., “Model vzaimodeistviya chastichno ionizovannogo vozdukha s kataliticheskoi poverkhnostyu”, Issledovaniya po giperzvukovoi aerodinamike i teploobmenu s uchetom neravnovesnykh khimicheskikh reaktsii, Izd-vo MGU, M., 1987, 58–69

[6] Kovalev V. L., Suslov O. N., “Modelirovanie vzaimodeistviya chastichno ionizovannogo vozdukha s kataliticheskoi poverkhnostyu vysokotemperaturnoi teploizolyatsii”, Izv. RAN. MZhG, 1996, no. 5, 179–190 | Zbl

[7] Kovalev V. L., Kolesnikov A. F., Krupnov A. A., Yakushin M. I., “Analiz fenomenologicheskikh modelei, opisyvayuschikh kataliticheskie svoistva poverkhnosti vysokotemperaturnoi mnogorazovoi teploizolyatsii”, Izv. RAN. MZhG, 1996, no. 6, 133–144 | MR

[8] Tirskii G. A., “Usloviya na poverkhnosti silnogo razryva v mnogokomponentnykh smesyakh”, Prikladnaya matematika i mekhanika, XXV:2 (1961), 196–208 | MR

[9] Langmuir I., “Monolayers on solids”, J. Chemical Society, 4 (1940), 511 | DOI

[10] Temkin M. I., “Kinetika statsionarnykh slozhnykh reaktsii”, Mekhanizm i kinetika slozhnykh kataliticheskikh reaktsii, Nauka, M., 1970, 57–72

[11] Tompkins F., “Geterogennyi kataliz. Reaktsii prostykh molekul na poverkhnosti metalla”, Novoe v issledovanii poverkhnosti tverdogo tela, Vyp. 1, Mir, M., 1977, 235–284

[12] Wise H., Wood B. J., “Reactive colisions between gas and surface atoms”, Adv. in Atomic and Mol. Phys. N Y, 3 (1967), 291–353 | DOI