Features of gas flow dynamics and convective heat transfer on a rough surface.
Features of convective heat transfer on a rough surface of a surface of heat-shielding materials.
Some features of thermo-friction destruction of carbon composite materials.
Mathematical model of erosive destruction of carbon heat-shielding materials.
Condition for modeling erosion destruction of carbon heat-shielding materials.
Main publications:
Afanasev V. A., Nikitin P. V., Tushavina O. V., Chudetskii Yu. V., “Problemy ispytanii uglerod-uglerodnykh kompozitov dlya teplovoi zaschity vysokoskorostnykh LA”, Polet, 2004, № 3, 40–45
Nikitin P. V., Tushavina O. V., “Termo-gazodinamika i teplo-massoobmen pri vzaimodeistvii sverkhzvukovogo geterogennogo potoka s ploskoi stenkoi”, Trudy MAI, 2016, № 89
Afanasev V. A., Tushavina O. V., “Metody i sredstva eksperimentalnoi otrabotki mnogorazovykh teplozaschitnykh materialov v usloviyakh klimaticheskikh vozdeistvii”, Vestnik Moskovskogo aviatsionnogo instituta, 2016, № 4
Afanasev V. A., Severtsev S. A., Tushavina O. V., “Snizhenie gazovykh nagruzok v kamerakh dlya polucheniya sverkhvysokogo vakuuma”, Vestnik Mashinostroeniya, 2017, № 2, 60–63
Agulnik A. B., Afanasev V. A., Tushavina O. V. i dr., Gazodinamicheskie i udarnye ispytaniya elementov konstruktsii dvigatelei letatelnykh apparatov, Uchebnoe posobie, RIO MAI, g. Moskva, 2016
O. V. Tushavina, M. S. Egorova, “Problems of heat and mass transfer in chemically reacting boundary layers on blunted bodies”, Uchenye Zapiski Kazanskogo Universiteta. Seriya Fiziko-Matematicheskie Nauki, 165:3 (2023), 294–306
A. N. Astapov, S. I. Zhavoronok, A. S. Kurbatov, L. N. Rabinskii, O. V. Tushavina, “Main problems in the creation of thermal-protection systems based on structurally heterogeneous materials and the methods of their solution”, TVT, 59:2 (2021), 248–279; High Temperature, 59:2 (2021), 221–247
V. A. Afanasiev, P. V. Nikitin, O. V. Tushavina, “Characteristics of the mechanism of thermal power destruction of carbon materials in a supersonic high-temperature air flow”, TVT, 57:4 (2019), 572–577; High Temperature, 57:4 (2019), 525–530