Moralev, I., Boytsov, S., Kazansky, P., & Bityurin, V., “Gas-dynamic disturbances created by surface dielectric barrier discharge in the constricted mode”, Experiments in Fluids, 2014
P. N. Kazanskii, “Особенности управления потоком в прямоугольной пологой каверне с помощью барьерного разряда с использованием обратных связей”, TVT, 62:2 (2024), 173–181
2022
2.
P. N. Kazanskii, I. V. Selivonin, I. A. Moralev, “Flow visualization in cavity with dielectric barrier discharge actuator control”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 48:23 (2022), 38–41
P. N. Kazanskii, A. Ya. Kotvitskii, I. A. Moralev, “Three-dimensional flow structure in the vicinity of the pulsed surface arc discharge in a magnetic field”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:11 (2021), 6–9; Tech. Phys. Lett., 47:8 (2021), 565–568
D. S. Munhoz, I. P. Zavershinskii, A. I. Klimov, P. N. Kazanskii, N. E. Molevich, I. A. Moralev, L. B. Polyakov, D. P. Porfir'ev, S. S. Sugak, B. N. Tolkunov, “Air flow control around a cylindrical model induced by a rotating electric arc discharge in an external magnetic field. Part II”, Zhurnal Tekhnicheskoi Fiziki, 87:8 (2017), 1159–1164; Tech. Phys., 62:8 (2017), 1171–1176
D. S. Munhoz, V. A. Bityurin, A. I. Klimov, P. N. Kazanskii, I. A. Moralev, L. B. Polyakov, B. N. Tolkunov, “Air flow control around a cylindrical model induced by a rotating electric arc discharge in an external magnetic field. Part I”, Zhurnal Tekhnicheskoi Fiziki, 87:7 (2017), 997–1002; Tech. Phys., 62:7 (2017), 1013–1018
V. A. Bityurin, A. V. Efimov, P. N. Kazanskii, A. I. Klimov, I. A. Moralev, “Aerodynamic Quality Management for the NACA 23012 Airfoil Model using the Surface High-Frequency Discharge”, TVT, 52:4 (2014), 504–511; High Temperature, 52:4 (2014), 483–489
P. N. Kazanskyi, A. I. Klimov, I. A. Moralev, “High-frequency actuator control of air flow near a circular cylinder: Impact of the discharge parameters on the cylinder aerodynamic drag”, TVT, 50:3 (2012), 346–353; High Temperature, 50:3 (2012), 323–330