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Diagnosing turbine set bearing dislocation defects based on cascade rundown characteristics

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Języki publikacji
EN
Abstrakty
EN
The article presents results of the vibration analysis of the rundown process of a large-power turbine set at the presence of the bearing lateral dislocation defect. Numerical calculations were carried-out, with the aid of a package of MESWIR codes, on a model turbine set in which the bearings had been dislocated by the maximum permissible range with respect to the kinetostatic catenary of rotors. The results are presented in the form of cascade diagrams of the relative mId absolute vibrations of an examined bearing set vs. rotational speed during the machine rundown. The research makes it possible to formulate a system of diagnostic relations connected with the bearing lateral dislocation defect, which can make the knowledge basis for a diagnostic system. It has been found that the dislocations of certain bearings in certain directions may make vibrations go beyond permissible regimes during machine rundown, even in cases when the vibrations have been within the limits at nominal operating conditions. Determined were most vulnerable location points and dislocation directions of the bearings, along with accompanying symptoms.
Rocznik
Tom
Strony
17--38
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
  • The Szewalski Institute of Fluid-Flow Machinery, Rotor Dynamics and Slide Bearings Dept., Fiszera 14, 80-952 Gdańsk, ryb@imp.gda.pl
Bibliografia
  • [1] Vance J. M.: Rotordynamics of Turbomachinery, A Wiley – Interscience Publications, New York 1985.
  • [2] Rao J. S: Vibratory Condition Monitoring of Machines, Narosa Publishing House, New Delhi, Chennai, Mumboi, Calcuta, London.
  • [3] Gerlach T., Rybczyński J., Makowiecki L.: Experiences in experimental determination of dynamical properties of selected structures, Machine Exploitation Problems, No. 3 (115) 1998, 527-550, (in Polish).
  • [4] Rybczyński J.: Attempts of explanation of the reasons of vibrations of three-supported rotor recorded on the research rig for investigations of rotor dynamics, Proceedings, II International Congress of Technical Diagnostics, Warsaw, Sept. 19-22, Vol. 2 (2000), 219.
  • [5] Hamrock B. J.: Fundamentals of Fluid Film Lubrication, McGraw-Hill Inc, New York, 1994.
  • [6] Chu F.: Stability and non-linear responses of a rotor-bearing system with pedestal looseness, J. of Sound and Vibration, Vol. 241 (2000), 879.
  • [7] Rybczyński J.: Analysis of acceptable nonalignment of bearings of large power turboset, Diagnostyka, Vol. 30/2 (2004), 97, Proceedings, 3rd International Congress of Technical Diagnostics DIAGNOSTICS ‘2004, Poznań, Sept. 6-9, 2004.
  • [8] Rybczyński J.: Permissible displacements of pairs of neighboring turbo-set bearings in relation to constructional shaft line, (in Polish), Tribologia, Vol. 4/2004 (196), 142-150, Proceedings of Conference Bearing Engineering ’04, Stare Jabłonki, September 22-24, 2004.
  • [9] Rybczyński J.: Assessment of the dynamic state of a rotating machine on the basis of bearing shaft trajectories, (in Polish) Tribologia, No. 2/2002, pp. 661-676, National Conference Bearing Engineering ’02, Jastrzębia Góra, May 22-24, 2002.
  • [10] Rybczyński J.: The possibilities of diagnosing of dynamic state of a rotating machine on the basis of measured trajectories of slider bearing pins, (in Polish) Machine Exploitation Problems, No. 2/99 (33), 123-131, National Conference Bearing Engineering ’99, Gdańsk-Gdynia-Sopot, May 19-21, 1999.
  • [11] Cholewa W., White M. F.: Inverse modelling in rotordynamics for identification of unbalance distribution, Machine Vibration, (2):157-167, 1993.
  • 12] Cholewa W., Kiciński J. (editors): Technical Diagnostics. The Methods of Inversing of Nonlinear Models of Objects, KPKM Silesian Technical University, Vol. 120, Gliwice 2001, (in Polish).
  • [13] Kiciński J., Drozdowski R., Materny P.: The non-linear analysis of the effect of suport construction properties on the dynamic properties of multi support rotor systems, Journal of Sound and Vibration, 206(4), 1997, 523-539.
  • [14] Rybczyński J., Banaszek S.: The generation of the base case regarding the 13K215 turbine set, Internal Report of IFFM, Gdańsk, No. 3718/2003, (in Polish).
  • [15] Rybczyński J.: Optimization of rotor critical speeds by change of features of machine’s bearings, Proceedings of ASME Turbo Expo 2004, Power for Land, Sea, and Air, June 14–17, 2004, Vienna, Austria, No. GT2004-54291.
  • [16] Rybczyński J.: Software for analysis of results of calculations made by means of NLDW code, Internal Report of IFFM, Gdańsk, No. 3487/2003, (in Polish).
  • [17] Rybczyński J.: The computer code RMAT 55 for creation of the diagnostic cards in regard to rotor machines, Internal Report of IFFM, Gdańsk, No. 171/2000, (in Polish).
  • [18] Cholewa W., Cholewa A., Chrzanowski P., Psiuk K.: The diagnostic cards containing selected data gained from DT200 system for different load state, Report of KPKM Silesian Technical University, Gliwice, May 2003, (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM2-0047-0021
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