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Unusual streaming in chemically reacting gases

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Nonlinear stimulation of the vorticity mode caused by losses in the momentum of sound in a chemically reacting gas, is considered. The instantaneous dynamic equation which describes the nonlinear generation of the vorticity mode, is derived. It includes a quadratic nonlinear acoustic source. Both periodic and aperiodic sound may be considered as the origin of the vorticity flow. In the non-equilibrium regime of a chemical reaction, sound and its nonlinear effects behave unusual. There may exist vortices whose direction of rotation is opposite to that of the vortices in the standard thermoviscous flows. This is illustrated by example relating to periodic sound. The theory and examples consider cases of both equilibrium and non-equilibrium regime of a chemical reaction.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
189--198
Opis fizyczny
Bibliogr. 12 poz.
Twórcy
autor
  • Gdansk University of Technology 11/12, G. Narutowicza St., 80-233 Gdansk, Poland
Bibliografia
  • [1] Lighthill M. J., Acoustic streaming, J. Sound. Vib., 61(3), (1978), 391–418.
  • [2] Rudenko O. V., Soluyan S. I., Theoretical foundations of nonlinear acoustics, Plenum, New York 1977.
  • [3] Qi Q., The effect of compressibility on acoustic streaming near a rigid boundary for a plane travelling wave, J. Acoust. Soc. Am., 94(2), (1993), 1090–1098.
  • [4] Menguy L., Gilbert J., Non-linear acoustic streaming accompanying a plane stationary wave in a guide, Acustica 86, (2000), 249–259.
  • [5] Makarov S., Ochmann M., Nonlinear and thermoviscous phenomena in acoustics, Part I, Acoustica 82, (1996) 579–606.
  • [6] Abouseif G. E., Toong T.-Y., Converti J., in Proceedings of the 17th International Symposium on Combustion (Univ. of Leeds, England, 1978), p. 1341.
  • [7] Molevich N. E., Non-stationary self-focusing of sound beams in a vibrationally excited molecular gas, Acoustical Physics, 48(2), (2002), 209–213.
  • [8] Molevich N. E., Sound velocity dispersion and second viscosity in media with nonequilibrium chemical reactions, Acoustical Physics, 49(2,) (2003), 229–232.
  • [9] Perelomova A., Acoustic radiation force and streaming caused by non-periodic acoustic source, Acta Acustica, 89, (2003), 754–763.
  • [10] Perelomova A., Development of linear projecting in studies of non-linear flow. Acoustic heating induced by non-periodic sound, Physics Letters A, 357, (2006), 42–47.
  • [11] Perelomova A., Wojda P., Generation of vorticity motion by sound in a chemically reacting gas and inversion of acoustic streaming in the non-equilibrium regime, Central European Journal of Physics, to be published.
  • [12] Osipov A. I., Uvarov A. V., Kinetic and gasdynamic processes in nonequilibrium molecular physics, Sov. Phys. Usp. 35 (11), (1992), 903–923.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM4-0038-0024
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