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Abstrakty
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
Czasopismo
Rocznik
Tom
Strony
187--205
Opis fizyczny
Bibliogr. 13 poz.
Twórcy
autor
- Technical University of Lodz, Division of General Mechanics, ul. Stefanowskiego 1/15 Lodz, Poland, Artur.Dabrowski@p.lodz.pl
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