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The Energy Space, Energy Flow and Synchronization

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper the way of transformation of the phase space to obtain the energy space is presented. This new kind of space allows for a new, geometrical view on energy changes in vibrating systems.
Słowa kluczowe
Rocznik
Strony
187--205
Opis fizyczny
Bibliogr. 13 poz.
Twórcy
Bibliografia
  • [1] Maidanik, G, Becker, KJ: Dependence of the induced loss factor on the coupling forms and coupling strengths: linear analysis, Journal of Sound and Vibration, (2003) 266, 15-32.
  • [2] Kishimoto, Y, Bernstein, DS, Hall, SR: Energy flow modeling of interconnected structures: a deterministic foundation for statistical energy analysis, Journal of Sound and Vibration, (1995), 183(2), 407-445.
  • [3] Mace, BR: Power flow between two continuous one-dimensional subsystems: a wave solution, Journal of Sound and Vibration, (1992), 154, 289-320.
  • [4] Xu, HD, Lee, HP, Lu, C: Numerical study on energy transmission for rotating hard disk systems by structural intensity technique, International Journal of Technical Sciences, (2004), 46, 639-652.
  • [5] Jang, HH, Lee, SH: Free vibration analysis of a spinning flexible disk-spindle system supported by ball bearing and flexible shaft using the FEM and substructure synthesis, Journal of Sound and Vibration, (2002), 251, 59-78.
  • [6] Opalinski, J: Kirlian type images and the transport of thin-film materials in hig voltage corona discharges, Journal of Applied Physics, (1979), 50(1), 498-504.
  • [7] Bankovskiv, NG, Korotkov, KG, Petrov, NN: Physical image-forming processes in gas-discharge visualisation (the Kirlian effect) (review), Soviet Journal of Communications and Technology, (1986), 31, 29-45.
  • [8] Korotkov, KG: Human Energy Field: study with GDV Bioelectrography, (2002), Backbone Publishing Company, USA.
  • [9] Griffel, DH: Linear algebra and its applications vol. 2 more advanced, (1989), Ellis Horwood Limited.
  • [10] Kapitaniak, T: Chaos for engineers, (1998), Springer-Verlag, Berlin-Heidelberg.
  • [11] Dąbrowski, A and Kapitaniak, T: Using chaos to reduce oscillations, Nonlinear Phenomena in Complex Systems, (2001), 4(2), 206-211.
  • [12] Dąbrowski, A: New design of the impact damper, Mechanics and Mechanical Engineering, (2000), 4(2), 191-196.
  • [13] Dąbrowski, A: The construction of the energy space, Chaos, Solitons and Fractals, (2005), 26, 1277-1292.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD5-0006-0026
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