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2010 | 10A |

Tytuł artykułu

Stability of form and concentration of energy at compression of gas-vapor bubbles formed in pulsed acoustic fields

Warianty tytułu

RU
ustoichivost' formy koncertrirovanie ehnergii pri szhatii parogazovykh puzyr'kov obrazovannykh v impul'snykh akusticheskikh poljakh

Języki publikacji

EN

Abstrakty

EN
RU

Wydawca

-

Rocznik

Tom

10A

Opis fizyczny

p.188-197,fig.,ref.

Twórcy

  • Volodymyr Dal East-Ukrainian National University, Lugansk, Ukraine
autor
autor

Bibliografia

  • 1. Nigmatulin R.I., Akhatov I.S., Bolotnova R.K. et al., 2005: Theory of supercompression of vapor bubbles and nanoscale thermonuclear fusion. Phys. Fluids. 17, 107106.
  • 2. Margulis I.M., Margulis M.A., 2000: Dynamics of single-bubble cavitation. Zh. nat. chemistry, (in Russian) 3(74), 566-574.
  • 3. Taleyarkhan R.P., West C.D., Cho J.S. et al., 2002: Evidence for nuclear emissions during acoustic cavitation. Science. 295, 1868-1873.
  • 4. Taleyarkhan R.P., West C.D, Lahey R.T. et al., 2006: Nuclear emissions during selfnucleated acoustic cavitation. Phys. Rev. Lett. 96, 034301.
  • 5. Margulis M.I., 1995: Method for production of high-temperature plasma and the implementation of thermo-nuclear reactions. Patent RF 2096934, (in Russian).
  • 6. Suslick K.S., Didenko Y., Fang M.M. et al., 1999: Acoustic cavitation and chemical consequences. Phil. Trans. R. Soc. Lond. A. 357, 335-353.
  • 7. Reshetnyak D.V., Golubnichiy P.I., Krutov Yu.M., 2006: Dynamic of a bubble in the field of a short bipolar acoustic pulse. AIP Conference Proc. 849, 105-109.
  • 8. Francescutto A., Ciuti P., Iernetti G., Dezhkunov N.V., 1999: Clarification of the cavitation zone by pulse modulation of the ultrasound field. Europhys. Lett. 1(47), 49-55.
  • 9. Brenner M.P., Hilgenfeldt S., Lohse D., 2002: Single-bubble sonoluminescence. Rev. Mod. Phys. 2(74), 425-484.
  • 10. Kamath V., Prosperetti A., 1989: Numerical integration methods in gas bubble dynamics. J. Acoust. Soc. Am. 4(85), 1538-1548.
  • 11. Lin H., Storey B.D., Szeri A.J., 2002: Inertially driven inhomogeneities in violently collapsing bubbles: the validity of the Rayleigh-Plesset equation. J. Fluid. Mech. 452, 145-162.
  • 12. Toegel R., Gompf B., Pecha R., Lohse D., 2000: Does water vapor prevent upscaling sonoluminescence?. Phys. Rev. Lett. 15(85), 3165-3168.
  • 13. Reid R., Sherwood T., 1971: The Properties of Gases and Liquids, (in Russian). Khimiya, Leningrad.
  • 14. Starik A.M., Titova N.S., 2001: Kinetic mechanisms of initiation of combustion of hydrogen-air mixtures in a supersonic flow behind the shock wave excitation of molecular vibrations of the initial reagents. Tech. Phys., (in Russian). 8(71), 1-12.
  • 15. Lin H., Storey B.D., Szeri A.J., 2002: Rayleigh-Taylor instability of violently collapsing bubbles. Phys. Fluids. 8(14), 2925-2928.
  • 16. Besov A.S., Kedrinsky V.K., Pal'chikov E.I., 1984: Studying the initial stage of cavitation in the power of the optical diffraction technique. Technical Physics Letters, (in Russian). 4(10), 240-244.
  • 17. Yuan L., Ho C.Y., Chu M.-C., Leung P.T., 2001: Role of gas density in the stability of single-bubble sonoluminescence. Phys. Rev. E. 64, 016317.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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