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Reduction of the sound power radiated by a two pistons system located near the three-wall corner

Identyfikatory
Warianty tytułu
Konferencja
XIV International Conference Noise Control'07 (3-6.06.2007, Elbląg, Poland)
Języki publikacji
EN
Abstrakty
EN
The main aim of this study is to calculate magnitudes describing the sound radiation by a system containing two vibrating circular pistons located in tree-wall corner. It is assumed that there is no influence of the surrounding medium on the sources vibrations and the vibration velocities of the pistons are time-harmonic. Making use of the known form of the Green function valid for tree-wall corner area the formulae presenting the acoustic pressure radiated by considered sources has been obtained. In order to characterize the sound radiation of the examined system of sources the self and the mutual powers in the integral form have been also expressed. Employing the well known integral expressions the obtained formula for the self power can be presented in the form of the fast convergent sum. The investigations presented herein can be very useful for a projection systems containing some vibrating pistons. On the basis of the presented in this paper formulae the acoustic properties of the vibrating pistons embedded in tree-wall corner can be predicted. It can be very advantageous to design vibrating systems and helpful to reduce harmful noise.
Rocznik
Strony
339--350
Opis fizyczny
Bibliogr. 12 poz., rys., tab.
Twórcy
autor
Bibliografia
  • [1] BERRY A., GUYADER J. L., NICOLAS J., A general formulation for the sound radiation from rectangular, baffied plates with arbitrary boundary conditions, Journal of the Acoustical Society of America, 86, 2792.2802 (1990).
  • [2] RDZANEK W. P. Jr., RDZANEK W. J., ENGEL Z., Theoretical analysis of sound radiation of an elastically supported circular plate, Journal of Sound and Vibration, 265, 155.174 (2003).
  • [3] RDZANEK W. P., RDZANEK W. J., Asymptotic formulas for the acoustic radiation impedance of an elastically supported annular plate, Journal of Sound and Vibration, 301, 544.559 (2007).
  • [4] LEE H., SINGH R., Acoustic radiation from out-plane modes of an annular disk using thin thick plate theories, Journal of Sound and Vibration, 282, 313.339 (2005).
  • [5] GINSBERG J. H., CHEN PEI.TAI, PIERCE A., Analysis using variational principles of the surface pressure and displacement along an axisymmetrically excited disk in a baffie, Journal of the Acoustical Society of America, 88, 548.559 (1990).
  • [6] AMABILI M., FROSALI G., KWAK M., Free vibrations of annular plates coupled with fluids, Journal of Sound and Vibration, 191, 825.846 (1996).
  • [7] WITKOWSKI P., The mutual impedance of two circular plates for high frequency wave radiation, Archives of Acoustics, 22, 463.471 (1997).
  • [8] RDZANEK W. J., RDZANEK W. P., Green function for the problem of sound radiation by a circular sound source located near two-wall corner, Archives of Acoustics, 31, 99.106 (2006).
  • [9] LEVINE H., LEPPINGTON F. G., A note on the acoustic power output of a circular plate, Journal of Sound and Vibration, 121, 269.275 (1988).
  • [10] MORSE P.M., INGARD K. U., Theoretical acoustics, Princeton University Press, 1986.
  • [11] PRITCHARD R. L., Mutual acoustic impedance between radiators in an infinite rigid plane, Journal of the Acoustical Society of America, 32, 730.737 (1960).
  • [12] WATSON G. N., Theory of Bessel functions, University Press, Cambridge 1966.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT8-0009-0042
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