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Nonlinear forced vibrations in a Helmholtz resonator

  • N. A. Borisova
  • A. P. Golovin
  • A. V. Gubarev
  • S. A. Laptev
  • A. A. Nekrasov
  • O. I. Pechenova
Article
  • 88 Downloads

Keywords

Mathematical Modeling Mechanical Engineer Industrial Mathematic Forced Vibration Helmholtz Resonator 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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Literature cited

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    H. Lamb, The Dynamical Theory of Sound, Dover, New York (1960).Google Scholar
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    O. E. Lancaster, Jet Propulsion Engines, Princeton Univ. Press (1959).Google Scholar
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    V. I. Podymov, V. S. Severyanin, and Ya. M. Shchelokov, Applied Research on Pulsed Periodic Combustion [in Russian], Kazan Univ. (1978).Google Scholar
  4. 4.
    V. V. Breev, N. A. Borisova, et al., Analysis of Processes and Methods of Numerical Study of Unsteady Gas Flows in a Periodic Gas Discharge Laser [in Russian], Preprint IAE-3343/16 (1980).Google Scholar
  5. 5.
    M. Alster, “Improved calculation of resonant frequencies of Helmholtz resonators,” J. Sound Vibr.,24, 63 (1972).Google Scholar
  6. 6.
    V. K. Ioffe, V. G. Korol'kov, and M. A. Sapozhkov, Handbook of Acoustics [in Russian], Svyaz', Moscow (1979).Google Scholar

Copyright information

© Plenum Publishing Corporation 1984

Authors and Affiliations

  • N. A. Borisova
    • 1
  • A. P. Golovin
    • 1
  • A. V. Gubarev
    • 1
  • S. A. Laptev
    • 1
  • A. A. Nekrasov
    • 1
  • O. I. Pechenova
    • 1
  1. 1.Moscow

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