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Strength Analysis on Brace Structure for Semi-Submersible in Consideration of Wave Slamming 被引量:2

Strength Analysis on Brace Structure for Semi-Submersible in Consideration of Wave Slamming
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摘要 Slamming on bracings of column stabilized units shall be considered as a possible limiting criterion under transit condition based on the requirements in DNV-OS-C103. However, the wave slamming loads under survival condition were ignored for the strength analysis of the brace structures in many semi-submersible projects. In this paper, a method of strength analysis of brace structure is proposed based on the reconstruction and extrapolation of numerical model. The full-scale mooring system, the wind, wave and current loads can be considered simultaneously. Firstly,the model tests of the semi-submersible platform in wind tunnel and wave tanker have been carried out. Secondly,the numerical models of the platform are reconstructed and extrapolated based on the results of model tests. Then, a nonlinear numerical analysis has been conducted to study the wave slamming load on brace in semi-submersible platform through the reconstructed and extrapolated numerical model. For the randomness of wave load, ten subcases under each condition have been carried out. The value of the 90% Gumble distribution values of the ten subcases are used. Finally, the strength on brace structure has been analyzed considering the wave slamming. The wave slamming loads have been compared between the survival condition and transit condition with the method. The results indicate that wave slamming under survival condition is more critical than that under transit condition.Meanwhile, the wave slamming is significant to the structural strength of the brace. It should be overall considered in the strength analysis of the brace structure. Slamming on bracings of column stabilized units shall be considered as a possible limiting criterion under transit condition based on the requirements in DNV-OS-C103. However, the wave slamming loads under survival condition were ignored for the strength analysis of the brace structures in many semi-submersible projects. In this paper, a method of strength analysis of brace structure is proposed based on the reconstruction and extrapolation of numerical model. The full-scale mooring system, the wind, wave and current loads can be considered simultaneously. Firstly,the model tests of the semi-submersible platform in wind tunnel and wave tanker have been carried out. Secondly,the numerical models of the platform are reconstructed and extrapolated based on the results of model tests. Then, a nonlinear numerical analysis has been conducted to study the wave slamming load on brace in semi-submersible platform through the reconstructed and extrapolated numerical model. For the randomness of wave load, ten subcases under each condition have been carried out. The value of the 90% Gumble distribution values of the ten subcases are used. Finally, the strength on brace structure has been analyzed considering the wave slamming. The wave slamming loads have been compared between the survival condition and transit condition with the method. The results indicate that wave slamming under survival condition is more critical than that under transit condition.Meanwhile, the wave slamming is significant to the structural strength of the brace. It should be overall considered in the strength analysis of the brace structure.
出处 《China Ocean Engineering》 SCIE EI CSCD 2018年第5期536-545,共10页 中国海洋工程(英文版)
基金 financially supported by the Natural Science Foundation of Jiangsu Province(Grant No.BK20170575) University Science Research Project of Jiangsu Province(Grant No.17KJB580005)
关键词 semi-submersible platform wave slamming brace structure structural strength semi-submersible platform wave slamming brace structure structural strength
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  • 1KAZEMI S,INCECIK A.Theoretical and experimental analysis of air gap response and wave-on-deck impact of floating offshore structures. OMAE 2007 -29288 . 2007
  • 2DANMEIER D. G.,SEAH R. K. M,FINNIGAN T. et al.Validation of wave run-up calculation methods for a gravity based structure. OMAE.2008.-57625 . 2008
  • 3KRIEBEL D.,WALLENDORF L.Air gap model tests on a MOB module. Proceedings of the Fourteenth International Offshore and Polar Engineering Con- ference . 2001
  • 4SIMOS A. N,SPARANO J. V,ARANHA J. A. P. et al.2nd order hydrodynamic effects on resonant heave, pitch and roll motions of a large-volume semi-submer- sible platform. OMAE.2008.-57430 . 2008
  • 5MATSUMTO F. T,WATAI R. A,SIMOS A. N.Wave run-up and air gap prediction for a large-volume semi-submersible platform. OMAE2010-20165 . 2010
  • 6LWANOWSKI B,WEMMENHOVE R.CFD simula- tion of wave run-up on a semi-submersible and com- parsion with experiment. OMAE 2009.-79052 . 2009
  • 7MAVRAKOS S. A,CHATJIGEORGIOU I. K,RIGOROPOULOS G.Scale experiment of motions and wave run-up on a TLP model,subjected to monochro- matic waves. Proceedings of the Fourteenth Inter- national Offshore and Polar Engineering Conference . 2004
  • 8Bert Sweetman,Steven R Winterstein.Airgap prediction:Use of second-order diffraction and multi-column models. ISOPE2001 .
  • 9Lin, C.-Y,Huang, C.-J.Decomposition of incident and reflected higher harmonic waves using four wave gauges. Coastal Engineering . 2004
  • 10Finn G N.Comparative Study on Airgap under Floating Platforms and Run-Up along Platform Columns. Marine Structure . 2003

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