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Tytuł artykułu

Laboratory modelling and acoustic diagnostics of hydrodynamical processes

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the present paper results of modelling of wind interaction with a water layer surface and research of the vortical structures arising downstream the flow around bodies are described. Results of the use of the method of acoustic diagnostics of spatially - periodic vortical flows are presented. At physical modelling in laboratory conditions wind was created with a low-velocity wind tunnel. The structure of an air stream and convective cells on water surface was investigated with the help of visualization. Some pictures of structures on the shallow sea surface are also demonstrated and discussed.
Czasopismo
Rocznik
Tom
Strony
47--54
Opis fizyczny
Bibliogr. 19 poz., rys.
Twórcy
autor
Bibliografia
  • 1. G.N. Panin. The heat-mass transfer between the basin and atmosphere under natural conditions. Nauka-press, Moskow, 1985 (in Russian).
  • 2. O.V. Emel'anova, A.E. Ordanovich. Vestnik Moskovskogo Universiteta, Ser. 1, Matematika. Mekhanika. 2002, N.3, 36 (in Russian).
  • 3. V.A. Shlychkov. Vichislitelnye Tehnoiogii. 1998, 3, N.6, 97 (in Russian).
  • 4. P. Gromov, A. Ezersky, A. Fabrikant. Sound Scattering on the vortex street from cylinder, Akust. Zh., Vol. 28(6), 763-765, 1982.
  • 5. C. Baudet, S. Giliberto, J. Pinton. Phys. Rev.Lett., Vol. 67(2), 193-195, 1991.
  • 6. A. Ezersky, P. Soustov, V. Chernov. Sound Scattering by Karman street, Acoust. Phys., Vol. 46(6), 764-769, 2000.
  • 7. P. Gromov, A. Ezersky, S. Kiyashko, A. Fabrikant. Preprint No. 59, Inst. Appl. Phys., Gorky, 1982.
  • 8. A. Ezersky, A. Zobnin, P. Soustov. Radiophys. & Quantum Electronics, Vol. 38(8), 832-839, 1995.
  • 9. J. Pinton, C. Laroche, S. Fauve, C. Baudet. Ultrasound scattering by, buoyancy driven flows, J. Phys. II (Paris), Vol. 7, 767-773, 1993.
  • 10. A. Petrossian, J. Pinton. J. Phys. II (Paris), Vol. 7, 801-812, 1997.
  • 11. V. Rapoport, N. Mityakov, V. Zinichev. Radiophys. & Quantum Electronics, Vol. 41(7), 241-245, 1998.
  • 12. A.H. Woodcock. J. Mar. Res. 1941, V.4, p. 153.
  • 13. A.B. Ezersky, V.V. Chernov. Izv. RAN. Fizika Atmosfery i Okeana. 1999, 35, 656 (in Russian).
  • 14. A.B. Ezersky, V.P. Reutov, G.V. Rybushkina, V.V. Chernov. Simulation of the convective structures in a thin liquid layer in the presence of a wind?driven flow. In: Frontiers of Nonlinear Physics, Nizhny Novgorod, 2005, p. 243-247.
  • 15. A. Ezersky, P. Gromov, P. Soustov, V. Chernov, «Acoustic sensing of hydrodynamic vortex flow», Hydroacoustics, 2005, V.8, p.47-52.
  • 16. P. Tchjen. Tearing off currents. M., Mir, 1973 (in Russian).
  • 17. An-bang Wang at all., “On the relationship of effective Reynolds number and Strouhal number for laminar vortex shedding of a heated circular cylinder,” Physics of Fluids, Vol. 12, No. 6, June 2006.
  • 18. A.B. Ezersky, P. Paranthoen. Int. J. Transport Phenomena 2005, v.7, p.45.
  • 19. P.L. Soustov, P.R. Gromov, A.B. Ezersky, V.V. Chernov, “Proceedings of the XIX session of the Russian Acoustical Society, Nizhny Novgorod, September 24-28, 2007, v.1, p.115.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWMA-0018-0006
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