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Spectral dynamic analysis of a stationary jack-up platform

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper refers to the dynamic short-term response analysis of the Baltic steel drilling platform (see Fig.2) in a random sea-state represented by one-dimensional wave spectrum proposed by Striekalov and Massel, which is recommended for the Baltic Sea area. The Baltic drilling platform is a jack-up type platform for the exploration and exploitation of oil under the Baltic Sea. The presented analysis deals with the stationary phase of the platform life when its legs are fixed in the sea bottom. The submerged elements of jack-up platforms are relatively slender, thus to assess the in-line wave forces a modified Morison equation is justified. The application of frequency transfer functions to offshore vibration systems leads to structural response spectra whose input is defined by the wave elevation and wind velocity spectra. The analysis can be applied also to support structures for offshore wind turbines.
Rocznik
Tom
Strony
40--48
Opis fizyczny
Bibliogr. 20 poz., rys., tab.
Twórcy
  • Gdańsk University of Technology 11/12 Narutowicza St. 80-233 Gdańsk Poland
Bibliografia
  • 1. Malhotra A.K.,Penzien J.: Response of offshore structures to random wave forces. Journal of the Structural Division, ASCE, 96, Nr ST10, 1970, pp. 2155–2173.
  • 2. Clauss G., Lehmann E., Ostergaard C.: Offshore structures, Vol. ISpringer-Verlag, 1992, Vol. II, 1994.
  • 3. Penzien J., Tseng S.: Three-dimensional dynamic analysis of fixed offshore platforms. Numerical Methods in Offshore Engineering, O.C. Zienkiewicz, R.W. Lewis and K.G. Stagg editors – Chapter 7, J. Wiley & Sons, New York, 1979
  • 4. Rozmayrnowski B., Mikulski T.: Selected problems of sensitivity and reliability of a jack-up platform. Polish Maritime Research, 1 (97), Vol. 25, 2018, pp. 77–84.
  • 5. DNV-OS-J101: Det Norske Veritas, Design of offshore wind turbine structures. May 2014.
  • 6. Jesień W.: Random Vibrations of the Baltic Drilling Platform Subjected to Wind Loads and Water Waves. Earthquake Engineering and Structural Dynamics, 15, 1987, pp. 595–617.
  • 7. Spanos P.D.: Stochastic linearization in structural dynamics. AMR, 34, No. 1, 1981.
  • 8. Rozmarynowski B.: Averaged Damping in Random Vibrations of the Baltic Drilling Platform. Journal of Sound and Vibration 139(3), 1990, pp. 437–458.
  • 9. Taylor E.R., Rajagopalan A.: Dynamics of offshore structures, Part I: Perturbation analysis. Journal of Sound and Vibration, No. 3, Vol. 83, 1982, pp. 417–431.
  • 10. RajagopalanA.,Taylor E.R.: Dynamics of offshore structures, Part II: Stochastic averaging analysis. Journal of Sound and Vibration, No 3,Vol. 83, 1982, pp. 401–416.
  • 11. Gierliński J.: RASOS (Reliability Analysis System for Offshore Structures) – Theoretical manual, Version Nov. WS-Atkins, UK, 1991.
  • 12. Rozmarynowski B.: Time-domain response of the Baltic drilling platform under regular sea wave excitation. (in Polish). Archiwum Hydrotechniki, Nr XXXV/3-4, 1988, pp. 251–276
  • 13. Massel St.: Hydrodynamical issues of offshore structures (in Polish), PWN, 1981.
  • 14. Davenport A.G.: The spectrum for horizontal gustiness near the ground in high winds. Quarterly Journal of the Royal Meteorological Society , 87, 1961, pp.194–211..
  • 15. Morison, J.R., O’Brien, M.P., Johnson, J.W. and Schast, S.A.: The forces excerted by surface waves on piles. PetroleumTrans., ASME, 189, 1950, pp. 149–154.
  • 16. Clough R.W. and Penzien J.: Dynamics of Structures. McGrawHill, New York, 1975.
  • 17. Barltrop N.D.P., Adams A.J.: Dynamics of fixed marine structures. Butterworth Heinemann, 1991.
  • 18. Wilson J.F. (Editor): Dynamics of offshore structures. John Wiley& Sons, 2003.
  • 19. Spanos P.D.: Stochastic analysis of oscillators with non-linear damping. Int. Journal of Non-linear Mechanics, 13, 1978, pp. 249–259.
  • 20. Khas’minskii R.Z.: A limit theorem for the solution of differential equations with random right-hand sides. Theory of Probability and its Applications, 1966, Vol. 11, No. 3, pp. 390-406.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c547c7a8-0a56-4b41-8bac-1b20b9dbce7f
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