A. D. Kosinov, N. V. Semenov, M. V. Piterimova, A. A. Yatskikh, Yu. G. Ermolaev, B. V. Smorodskii, A. V. Shmakova
|
|
|
|
References
|
|
| |
| 1. |
Q. H. Din, I. V. Egorov, A. V. Fedorov, “Mach wave effect on laminar-turbulent transition in supersonic flow over a flat plate”, Fluid Dynamics, 53:5 (2018), 690–701 |
| 2. |
A. V. Vaganov, Yu. G. Ermolaev, G. L. Kolosov i dr., “K vozdeistviyu padayuschei volny Makha na sverkhzvukovoi pogranichnyi sloi”, Teplofizika i aeromekhanika, 23:1 (2016), 45–50 |
| 3. |
S. A. Gaponov, “Quasi-resonance excitation of stationary disturbances in compressible boundary layers”, Intern. J. Mech., 11 (2017), 120–127 |
| 4. |
V. N. Zhigulev, Vozniknovenie turbulentnosti, eds. V. N. Zhigulev, A. M. Tumin, Nauka. Sib. otd-nie, Novosibirsk, 1987 |
| 5. |
A. V. Boiko, A. V. Dovgal, V. V. Kozlov, A. M. Sorokin, “Ustoichivost prostranstvenno-periodicheskikh i modulirovannykh vo vremeni lokalnykh otryvnykh techenii”, PMTF, 62:3 (2021), 25–37 |
| 6. |
I. V. Egorov, K. Kh. Din, N. K. Nguen, N. V. Palchekovskaya, “Chislennoe modelirovanie vzaimodeistviya volny Makha i sverkhzvukovogo pogranichnogo sloya na ploskoi plastine s ostroi perednei kromkoi”, Uchen. zap. Tsentr. aerogidrodinam. in-ta, 52:3 (2021), 18–28 |
| 7. |
Boiko A. V., The origin of turbulence in near-wall flows, eds. A. V. Boiko, G. R. Grek, A. V. Dovgal, V. V. Kozlov, Springer-Verlag, Berlin, 2002 |
| 8. |
A. D. Kosinov, M. V. Piterimova, A. V. Shmakova i dr., “Eksperimentalnoe issledovanie evolyutsii kontroliruemykh vozmuschenii v prodolnom vikhre, porozhdennom v pogranichnom sloe na ploskoi plastine pri chisle Makha M=2”, PMTF, 64:4 (2023), 118–129 |
| 9. |
A. D. Kosinov, N. V. Semenov, A. A. Yatskikh i dr., “Vliyanie radiusa pritupleniya perednei kromki plastiny na otklik pogranichnogo sloya pri vozdeistvii N-volny pri chisle Makha M = 2”, Teplofizika i aeromekhanika, 30:2 (2023), 239–249 |
| 10. |
A. D. Kosinov, N. V. Semionov, S. G. Shevel'kov, O. I. Zinin, “Experiments on the nonlinear instability of supersonic boundary layers”, Nonlinear instability of nonparallel flows, Springer, Berlin; Heidelberg, 1994 |
| 11. |
Kosinov A. D., Semionov N. V., Yermolaev Yu. G., Disturbances in test section of T-325 supersonic wind tunnel, In-t teoret. i prikl. mekhaniki SO RAN, # 6-99, Novosibirsk, 1999 |
| 12. |
S. A. Gaponov, Razvitie vozmuschenii v szhimaemykh potokakh, eds. S. A. Gaponov, A. A. Maslov, Nauka. Sib. otd-nie, Novosibirsk, 1980 |
| 13. |
U. X. Dorrens, Giperzvukovye techeniya vyazkogo gaza, Mir, M., 1966 |
| 14. |
L. Lees, C. C. Lin, Investigation of the stability of the laminar boundary layer in a compressible fluid, Tech. note, NACA. N 1115, 1946 |
| 15. |
L. M. Mack, “Boundary-layer linear stability theory”, Special course on stability and transition of laminar flow, AGARD Report N 709. Pt 3, 1984, 1–3 |
| 16. |
L. M. Mack, “Review of linear compressible stability theory”, Stability of time dependent and spatially varying flows, Springer, N. Y., 1987, 164–187 |
| 17. |
H. L. Reed, P. Balakumar, “Compressible boundary layer stability theory”, Phys. Fluids A. Fluid Dynamics, 2:8 (1990), 1341–1349 |
| 18. |
S. K. Godunov, “O chislennom reshenii kraevykh zadach dlya sistem lineinykh obyknovennykh differentsialnykh uravnenii”, Uspekhi mat. nauk, 16:3 (1961), 171–174 |
| 19. |
S. D. Conte, “The numerical solution of linear boundary value problems”, SIAM Rev., 8:3 (1966), 309–321 |
| 20. |
L. Mack, “A numerical study of the temporal eigenvalue spectrum of the Blasius boundary layer”, J. Fluid Mech., 73:3 (1976), 497–520 |
| 21. |
M. R. Scott, H. A. Watts, “Computational solution of linear two-point boundary value problems via orthonormalization”, SIAM J. Numer. Anal., 14:1 (1977), 40–70 |
| 22. |
V. K. Garg, “Improved shooting techniques for linear boundary value problems”, Comput. Methods Appl. Mech. Engng., 22:1 (1980), 87–99 |
| 23. |
A. Davey, “An automatic orthonormalization method for solving stiff boundary-value problems”, J. Comput. Phys., 51:2 (1983), 343–356 |
| 24. |
N. P. Bitter, J. E. Shepherd, “Stability of highly cooled hypervelocity boundary layers”, J. Fluid Mech., 778 (2015), 586–620 |
| 25. |
Yu. G. Ermolaev, A. D. Kosinov, V. I. Lysenko i dr., “Sovmestnoe vliyanie pronitsaemosti i sherokhovatosti poverkhnosti na ustoichivost i perekhod sverkhzvukovogo pogranichnogo sloya na ploskoi plastine”, Izv. RAN. Mekhanika zhidkosti i gaza, 2014, no. 5, 52–59 |
| 26. |
V. I. Lysenko, S. A. Lysenko, B. V. Smorodsky, et al., “Combined influence of coating permeability and roughness on supersonic boundary layer stability and transition”, J. Fluid Mech., 798 (2016), 751–773 |
| 27. |
A. V. Panina, A. D. Kosinov, Yu. G. Ermolaev i dr., “Eksperimentalnoe issledovanie srednikh i pulsatsionnykh kharakteristik 2D/3D sverkhzvukovogo pogranichnogo sloya za ploskimi odinochnymi sherokhovatostyami”, Teplofizika i aeromekhanika, 21:1 (2014), 3–14 |
| 28. |
A. D. Kosinov, A. A. Maslov, S. G. Shevelkov, “Eksperimentalnoe issledovanie vliyaniya pritupleniya perednei kromki ploskoi plastiny na razvitie trekhmernykh voln v sverkhzvukovom pogranichnom sloe”, PMTF, 1987, no. 2, 53–56 |
| 29. |
C. S. J. Mayer, S. Wernz, H. F. Fasel, “Numerical investigation of the nonlinear transition regime in a Mach 2 boundary layer”, J. Fluid Mech., 668 (2011), 113–149 |