Zobrazeno 1 - 10
of 18
pro vyhledávání: '"E. Ya. Kogan"'
Publikováno v:
Высшее образование в России, Vol 28, Iss 7, Pp 9-18 (2019)
The purpose of this work is to summarize and typologize ways and forms of organizing the interaction between the domestic system of higher education and regional markets. The authors focus on the forms of interaction organization between higher educa
Externí odkaz:
https://doaj.org/article/18c28835d2154b7a8ba2488b8e120081
Autor:
I. P. Zavershinskii, S. S. Sugak, V. G. Makaryan, D. P. Porfir’ev, Nonna Molevich, E. Ya. Kogan
Publikováno v:
Technical Physics Letters. 39:333-336
Based on the results of numerical simulation of a nonstationary, nonaxisymmetric turbulent swirling gas flow in a tube with local sources of heat release, it is shown that a precessing vortex core (PVC) appears at supercritical values of the swirl pa
Autor:
I. P. Zavershinskii, E. Ya. Kogan
Publikováno v:
High Temperature. 44:144-150
Nonlinear equations are derived, which describe the evolution of two-dimensional acoustic disturbances in a thermodynamically nonequilibrium gas. The characteristic features of parametric interaction of wave packets in acoustically active media are a
Autor:
I. P. Zavershinskii, E. Ya. Kogan
Publikováno v:
High Temperature. 38:273-277
The evolution of weak shock waves in nonequilibrium gas media with fluctuating parameters is investigated. Two-dimensional nonlinear, evolution equations are derived for the averaged parameters of an acoustic field induced by a body in a supersonic f
Autor:
I. P. Zavershinskii, V. N. Knestyapin, E. Ya. Kogan, Bengt Enflo, Claes M. Hedberg, Leif Kari
Publikováno v:
AIP Conference Proceedings.
The stability of vortical disturbances propagating at an angle to the main flow in a nonequilibrium compressible supersonic boundary layer has been investigated. The dependences of the critical Reynolds number on the degree of nonequilibrium and on t
Autor:
V.I. Karas, Vitalii D. Shafranov, A. A. Galeev, E. A. Kuznetsov, Anatoly Neishtadt, N. S. Erokhin, A. N. Skrinsky, Roald Z. Sagdeev, A. M. Fridman, G. Vekshtein, Vladimir E. Zakharov, A. A. Vasil’ev, E. Ya. Kogan, Éduard P Kruglyakov, S. V. Prants, Lev Zelenyi, Aleksandr Grigorievich Litvak, A. B. Mikhailovskii, A. V. Timofeev, J. G. Lominadze
Publikováno v:
Plasma Physics Reports. 35:526-527
Autor:
N. S. Buchel’nikova, R. A. Kovrazhkin, A. K. Richter, B. V. Chirikov, V. I. Talanov, A. G. Litvak, V. N. Budnikov, V. I. Volosov, G. M. Fraiman, A. B. Shvartsburg, I. G. Granberg, I. V. Karas, V. M. Balebanov, V. I. Moroz, A. B. Mikhailovskii, E. A. Kuznetsov, N. P. Laverov, O. G. Chkhetiani, I. N. Meshkov, V. S. Tsypin, V. A. Buts, A. M. Egorov, J. G. Lominadze, L. M. Zelenyi, A. V. Gaponov-Grekhov, M. Bornatici, A. V. Nikolaev, H. Kikuchi, A. S. Kingsep, D. Schertzer, G. I. Dimov, R. Z. Sagdeev, V. E. Zakharov, K. N. Stepanov, E. N. Pelinovskii, A. A. Vodyanitskii, V. I. Muratov, A. D. Piliya, A. A. Rukhadze, G. M. Zaslavskii, E. D. Volkov, V. V. Zheleznyakov, I. N. Onishchenko, M. A. Miller, V. D. Shapiro, B. Alterkop, A. D. Pataraya, V. D. Shafranov, O. S. Pavlichenko, G. S. Golitsyn, A. N. Skrinskii, V. B. Gil’denburg, U. Frish, A. I. Morozov, V. I. Karas, E. Ya. Kogan, V. E. Golant, V. Krasnosel’skikh, V. N. Oraevskii, A. A. Galeev, R. A. Syunyaev, É. P. Kruglyakov, N. S. Erokhin, D. D. Ryutov, L. A. Nazarenko, V. I. Lapshin, I. V. Pryanikov, G. Z. Machabeli, G. Vekshtein, V. P. Silin, M. I. Petelin, A. M. Dykhne, V. Yu. Trakhtengerts, S. I. Kononenko, V. M. Kontorovich, S. N. Gordienko, Ya. B. Fainberg, E. Z. Gusakov, A. M. Fridman, M. B. Gokhberg
Publikováno v:
Plasma Physics Reports. 28:972-973
Autor:
I. P. Zavershinskii, E. Ya. Kogan
Publikováno v:
Technical Physics Letters. 26:215-216
A mechanism responsible for a decrease in the turbulent friction of bodies moving in (or streamlined by) a vibrationally-nonequilibrium gas flow is proposed. Heating of the gas in the immediate vicinity of the surface as a result of heterogeneous rel
Publikováno v:
AIP Conference Proceedings.
It’s considered some effects of the gas‐plasma interaction that is discharge damping behind the shock wave front, the structure of the weak shock wave (SW) front in plasma and SW generation by the breakdown wave front.
Autor:
E. Ya. Kogan, I. P. Zavershinsky
Publikováno v:
AIP Conference Proceedings.
It is shown that the second viscosity method is universal for the gasdinamic disturbances evolution description in the partially ionised plasma. It is considered the nonlinear acoustic structures.