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Structural acoustic control of a one side loaded circular plate with piezoelectric actuators

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Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The experiment presented in this paper is a part of an ongoing research project connected with the structural acoustic control in one side fluid loading structures. The system considered in the study is built up of a thin, circular plate and eight square piezoelectric elements. The plate is clamped along its edge by finite rigid co-planer baffle. The baffle with other four rigid walls is formed aquarium filled with water. Numerical computations utilize the FEM approach supported by Ansys software. The natural frequencies were determined using modal analysis. The harmonic analysis covers the acoustic radiation due to steady-state plate vibrations for the first two modes of natural vibrations. Each mode was examined individually. The test results indicate that actuators as flexural wave-source can decrease the displacement response as well as sound radiation for a pure tone input.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
245--254
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
autor
  • AGH University of Science and Technology, Department of Mechanics and Vibroacoustics 30, Al. Mickiewicza, 30-095 Kraków, Poland, wiciak@agh.edu.pl
Bibliografia
  • [1] Ansys user manual 9.0.
  • [2] Amabili M., Frosali G., Kwak M. K., Free vibrations of annular plates coupled with fluids, Journal of Sound and Vibration, 191 (5), (1996), 825–846.
  • [3] Amabili M., Kwak M. K, Free vibrations of circular plates coupled with fluids: Revesing the Lamb Problem, Journal of Fluids and Structures, 10, (1996), 743–761.
  • [4] Dimitriadis E. K., Fuller C. R., Active control of sound transmission through elastic plates using piezoelectric actuators, American Institute of Aeronautics and Astronautics Journal 29 (11), (1991), 1771–1777.
  • [5] Donoso A., Bellido J. C., Distributed piezoelectric modal sensors for circular plates, Journal of Sound and Vibration 319, (2009), 50–57.
  • [6] Fuller C. R., Elliott S. J., Nelson P. A., Active Control of Vibrations, Academic Press, London 1997.
  • [7] Gloza I., Grelowska G., Reduction of Ship’s Vibration as an Element of Protection of the Sea Environment from the Noise Pollution, Polish Journal of Environmental Studies 13 Supplement III, 2004, 92–95.
  • [8] Iwaniec M., Wiciak J., Prediction of Vibroacoustical Parameters on a Cruise Ship, Acta Acoustica united with Acustica 88, (2002), 772–776.
  • [9] Kozaczka E., Domagalski J., Identification of hydroacoustic wave sources of ship in motion, Polish Maritime Research 4 (67), 17, (2010), 64–71.
  • [10] Kozaczka E., Grelowska G., Shipping noise, Archives of Acoustics, 29 (2), (2004), 169–178.
  • [11] Kwak M. K, Kim K. C., Axisymmetric vibration of circular plates in contact with fluid, Journal of Sound and Vibration, 146 (3), (1991), 381–389.
  • [12] Lamb H., On the vibrations of an elastic plate in contact with water, Proc. of the Royal Society London, Series A98, 1920, 205–216.
  • [13] Leissa A. W., Plates, Encyclopedia of Vibrations, Ed. S. Braun, D. Evins, S.S. Rao, Academic Press, 2002, 1024–1031.
  • [14] Leniowska L., Modelling and Control of structure-acoustic interaction problems via piezoceramic actuators. Mechanics, 24 (2), (2005), 113–119.
  • [15] Liang C. C., Tai Y. S., Li P. L., Natural frequencies of annular plates having contact with fluid, Journal of Sound and Vibration 228 (5), (1991), 1167–1181.
  • [16] Niekerk J. L., Tongue B. H., Packard A. K., Active control of a circular plate to reduce transient noise transmission, Journal of Sound and Vibration, 183 (4), (1995), 643–662.
  • [17] Sekouri E. M., Hu Y-R., Ngo A. D., Modelling of a circular plate with piezoelectric actuators, Mechatronics 14, (2004), 1007–1020.
  • [18] Sohn J. W., Choi S. B., Lee C., Active vibration control of smart hull structure using piezoelectric composite actuators, Smart Mater. Struct. 18, 074004, (14pp), 2009.
  • [19] Tylikowski A., Control of circular plate vibrations via piezoelectric actuators shunted with a capacitive circuit, Thin-Walled Structures, 39, (2001) 83–94.
  • [20] Wiciak J., Acoustics Radiation of a Plate Bonded on all Edges With Four Pairs Actuators, Molecular and Quantum Acoustics, 25, (2004), 281–290.
  • [21] Wiciak J., Modelling of vibration and noise control of a submerged circular plate, Archives of Acoustics, 32, 4 (Supplement), 265–270, 2007.
  • [22] Wiciak J., Active control of a submerged circular plate, Hydroacoustics, 11, (2008), 441–448.
  • [23] Wiciak J., Structural Acoustic Control of a Submerged Circular Plate With Piezoelectric Actuators, Proc. Internoise 2010, Lisbon, Portugal, in CD-ROM.
  • [24] Won-Ho J., Sung-Hoon K., Jong-Gug B., Suk-Yoon H., Control of Radiated Noise from Ship’s Cabin Floor, Proceedings Int. Congress on Sound and Vibration, Australia, in CD-ROM, 2007.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM4-0038-0030
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