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Ship seakeeping in UKC determination – a further study on wave force transfer functions

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Języki publikacji
EN
Abstrakty
EN
Modeling of ship motions in waves concentrates in most applications on the response amplitude operator (RAO). This mathematically not demanding method of analysis is very attractive, but loses some essential information in certain situations. The objective of present contribution is to establish and investigate preliminary foundations for a seakeeping model as optimal for under keel clearance (UKC) estimation. A special attention was devoted to transients of motions, stationary harmonic motions, coupling between degrees of freedom, and the wave force transfer functions – all in the aspect of shallow water environment.
Słowa kluczowe
Rocznik
Strony
5--15
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
autor
  • Maritime University of Szczecin, Faculty of Navigation, Institute of Marine Traffic Engineering Department of Ship Manoeuvring and Maritime Pilotage 70-500 Szczecin, ul. Wały Chrobrego 1–2, j.artyszuk@am.szczecin.pl
Bibliografia
  • 1. GOURLAY T.P.: Ship Underkeel Clearance in Waves. Proc. “Coasts and Ports”, Melbourne 2007.
  • 2. DUDZIAK J.: Ship Theory. Wydawnictwo Morskie, Gdańsk 1988 (in Polish).
  • 3. PAWŁOWSKI M.: Linear model of ship motions in irregular wave. Technical Report No. 41, PRS, Gdańsk 2001 (in Polish).
  • 4. CUMMINS W.E.: The Impulse Response Function and Ship Motions. Schiffstechnik, 1962, vol. 9, No. 47(Jun).
  • 5. OGILVIE T.F.: Recent Progress Toward the Understanding and Prediction of Ship Motions. Fifth (5th) Symposium on Naval Hydrodynamics, Sep 10–12 (Publ. ACR-112, eds. Lunde J.K, Doroff S.W.), ONR/DotN/Skipsmodelltanken, Bergen 1964.
  • 6. PAWŁOWSKI M.: Nonlinear model of ship motions in irregular wave. Technical Report No. 33, PRS, Gdańsk 1999 (in Polish).
  • 7. PEREZ T., FOSSEN T.I., SORENSEN A.: A Discussion About Seakeeping and Manoeuvring Models For Surface Vessels. MSS Technical Report, MSS-TR-001, NTNU/CeSOS, Trondheim 2004.
  • 8. PETERSEN M.J.: Dynamics of Ship Collisions. Ocean Engineering, 1982, vol. 9, No. 4.
  • 9. KRĘŻELEWSKI M.: General and Ship Hydromechanics. Part I, University of Technology, Gdańsk 1982 (in Polish).
  • 10. JOURNEE J.M.J.: Verification and Validation of Ship Motions Program SEAWAY. Report 1213a, DUT, Delft 2001.
  • 11. JOURNEE J.M.J., ADEGEEST L.J.M.: Theoretical Manual of Strip Theory Program “Seaway for Windows”. Report 1370, DUT/AMARCON, Delft 2003.
  • 12. VANTORRE M., JOURNEE J.M.J.: Validation of the Strip Theory Code SEAWAY by Model Tests in Very Shallow Water. Report 1373-E (also Numerical Modelling Colloquium, Antwerp, Flanders Hydraulics Research, Oct 2324), Delft University of Technology/SHL, Delft 2003.
  • 13. OCHI M.K.: Ocean Waves. The Stochastic Approach. Cambridge University Press, Cambridge (UK) 1998.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM7-0007-0023
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