Numerical experiments on modeling of steady-state structures in supersonic flows with asymmetric energy supply
Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 50 (2010) no. 10, pp. 1840-1853 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

The formation of steady-state structures near the end face of a body placed in a supersonic flow with an asymmetrically located energy source is simulated and studied. The parameters of the steady-state flow structures undergo several oscillations with roughly equal amplitudes and periods. Depending on the location of the source relative to the body, structures with various numbers of elements (from one to four) are observed in the simulation.
@article{ZVMMF_2010_50_10_a9,
     author = {O. A. Azarova},
     title = {Numerical experiments on modeling of steady-state structures in supersonic flows with asymmetric energy supply},
     journal = {\v{Z}urnal vy\v{c}islitelʹnoj matematiki i matemati\v{c}eskoj fiziki},
     pages = {1840--1853},
     year = {2010},
     volume = {50},
     number = {10},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/ZVMMF_2010_50_10_a9/}
}
TY  - JOUR
AU  - O. A. Azarova
TI  - Numerical experiments on modeling of steady-state structures in supersonic flows with asymmetric energy supply
JO  - Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki
PY  - 2010
SP  - 1840
EP  - 1853
VL  - 50
IS  - 10
UR  - http://geodesic.mathdoc.fr/item/ZVMMF_2010_50_10_a9/
LA  - ru
ID  - ZVMMF_2010_50_10_a9
ER  - 
%0 Journal Article
%A O. A. Azarova
%T Numerical experiments on modeling of steady-state structures in supersonic flows with asymmetric energy supply
%J Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki
%D 2010
%P 1840-1853
%V 50
%N 10
%U http://geodesic.mathdoc.fr/item/ZVMMF_2010_50_10_a9/
%G ru
%F ZVMMF_2010_50_10_a9
O. A. Azarova. Numerical experiments on modeling of steady-state structures in supersonic flows with asymmetric energy supply. Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 50 (2010) no. 10, pp. 1840-1853. http://geodesic.mathdoc.fr/item/ZVMMF_2010_50_10_a9/

[1] Georgievskii P. Yu., Levin V. A., “Sverkhzvukovoe obtekanie tel pri nalichii vneshnikh istochnikov energovydeleniya”, Pisma v ZhTF, 14:8 (1988), 684–687

[2] Artemev V. I., Bergelson V. I., Nemchinov I. V. i dr., “Izmenenie rezhima sverkhzvukovogo obtekaniya prepyatstviya pri vozniknovenii pered nim tonkogo razrezhennogo kanala”, Mekhan. zhidkosti i gaza, 1989, no. 5, 146–151

[3] Kolesnichenko Yu. F., Brovkin V. G., Azarova O. A. et al., Microwave energy release regimes for drag reduction in supersonic flows, Paper AIAA-2002-0353, 13 pp.

[4] Knight D., Azarova O., Kolesnichenko Yu., “Drag force control via asymmetrical microwave filament location in a supersonic flow”, Proc. Sixth European Symposium on Aerothermodynamics for Space Vehicles (Versailles, France, 3–6 Nov. 2008)

[5] Knight D., Azarova O. A., Kolesnichenko Yu. F., On details of flow control via characteristics and location of microwave filament during its interaction with supersonic blunt body, Paper AIAA-2009-847, 21 pp.

[6] Azarova O. A., “Modelirovanie stokhasticheskikh pulsatsionnykh techenii s neustoichivostyami na osnove raznostnykh skhem na minimalnom shablone”, Zh. vychisl. matem. i matem. fiz., 49:8 (2009), 1466–1484 | MR

[7] Azarova O. A., “Modeling of steady flow structures accompanying shear layer instability”, Fluxes and Structures in Fluids: Physics of Geospheres, Proc. Internet. Conf. (MSU, June 2009), M., 22–27

[8] Azarova O. A., Knight D., Kolesnichenko Yu. F., Instabilities, vortices and structures characteristics during interaction of microwave filaments with body in supersonic flow, Paper AIAA-2010-1004, 16 pp.

[9] Azarova O. A., Grudnitskii V. G., Kolesnichenko Yu. F., “Statsionarnoe obtekanie tel sverkhzvukovym potokom gaza, soderzhaschim beskonechnyi tonkii razrezhennyi kanal”, Matem. modelirovanie, 18:1 (2006), 79–87 | MR | Zbl

[10] Belotserkovskii O. M., Grudnitskii V. G., Prokhorchuk Yu. A., “Raznostnaya skhema vtorogo poryadka tochnosti na minimalnom shablone dlya giperbolicheskikh uravnenii”, Zh. vychisl. matem. i matem. fiz., 23:1 (1983), 119–126 | MR

[11] Azarova O. A., “Odna raznostnaya skhema na minimalnom shablone dlya rascheta dvumernykh osesimmetrichnykh techenii gaza. Primery pulsiruyuschikh potokov s neustoichivostyami”, Zh. vychisl. matem. i matem. fiz., 49:4 (2009), 734–754 | MR

[12] Blumen W., Drazin P. G., Billings D. F., “Shear layer instability of an inviscid compressible fluid, 2”, J. Fluid Mech., 71 (1975), 305–316 | DOI | Zbl

[13] Stepanyants Yu. A., Fabrikant A. L., Uspekhi fiz. nauk, 159:83 (1989)

[14] Fridman A. M., “Predskazanie i otkrytie silneishikh gidrodinamicheskikh neustoichivostei, vyzvannykh skachkom skorosti: teoriya i eksperiment”, Uspekhi fiz. nauk, 178:3 (2008), 225–242