@article{ZVMMF_1992_32_10_a7,
author = {A. G. Kuz'min},
title = {The stability of transonic decelerating flow in a channel},
journal = {\v{Z}urnal vy\v{c}islitelʹnoj matematiki i matemati\v{c}eskoj fiziki},
pages = {1628--1640},
year = {1992},
volume = {32},
number = {10},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/ZVMMF_1992_32_10_a7/}
}
A. G. Kuz'min. The stability of transonic decelerating flow in a channel. Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 32 (1992) no. 10, pp. 1628-1640. http://geodesic.mathdoc.fr/item/ZVMMF_1992_32_10_a7/
[1] Ferri A., Aerodinamika sverkhzvukovykh techenii, Gostekhteorizdat, M.–L., 1952
[2] T. Emmons (red.), Osnovy gazovoi dinamiki, Izd-vo inostr. lit., M., 1963
[3] Kuz'min A. G., Non-classical equations of mixed type and their applications to gas dynamics, Birkhäuser, Basel etc., 1992 | MR | Zbl
[4] Deich M. E., Zaryankin A. E., Gazodinamika diffuzorov i vykhlopnykh patrubkov turbomashin, Energiya, M., 1970
[5] Savu G., Trifu O., “Porous airfoils in transonic flow”, AIAA Journal, 22:5 (1984), 989–991 | DOI
[6] Chen Chung-Lung, Chow Chuen-Yen, Van Dalsem W. R., Holst T. L., “Computation ot viscous transonic flow over porous airfoils”, J. Aircraft, 26:12 (1989), 1067–1075 | DOI
[7] Bush R. H., External compression inlet predictions using an implicit, upwind, multiple zone approach, AIAA Paper No 85-1521, 1985, 438–417
[8] Kuzmin A. G., “Issledovanie ustoichivosti techenii gaza v soplakh i diffuzorakh”, Zh. vychisl. matem. i matem. fiz., 29:9 (1989), 1354–1366 | MR
[9] Kempbell A. F., Siberg Dzh., Forster K. K., “Osnovannyi na reshenii uravnenii Nave-Stoksa raznostnyi metod rascheta ploskogo techeniya v sverkhzvukovom vozdukhozabornike s vneshnim szhatiem”, Aerokosmich. tekhn., 1986, no. 6, 11–19
[10] Smirnov M. M., Vyrozhdayuschiesya giperbolicheskie uravneniya, Vysheish. shkola, Minsk, 1977 | MR | Zbl
[11] Smirnov M. M., Vyrozhdayuschiesya ellipticheskie i giperbolicheskie uravneniya, Nauka, M., 1966 | MR