1995Unpublished venueRequires access

LONG TERM SPRINGING AND WHIPPING STRESSES IN HIGH SPEED VESSELS

Per Freiesleben Hansen, Jørgen Juncher Jensen, Preben Terndrup Pedersen

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Abstract

High-speed ships are weight sensitive structures and high strength steel, aluminium or composites are preferred building materials. The use of these materials results in larger hull flexibility than more conventional materials. Therefore, for large fast ships, the lowest natural frequencies of the global hull modes can be relatively low compared to the frequency of wave encounter. In this paper, a parameter study is performed to determine the relative importance of hull flexibility and ship length on the wave-induced springing and whipping response of fast monohull vessels.

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What this paper is about

High-speed ships are weight sensitive structures and high strength steel, aluminium or composites are preferred building materials. The use of these materials results in larger hull flexibility than more conventional materials. Therefore, for large fast ships, the lowest natural frequencies of the global hull modes can be relatively low compared to the frequency of wave encounter. In this paper, a parameter study is performed to determine the relative importance of hull flexibility and ship length on the wave-induced springing and whipping response of fast monohull vessels.

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Available abstract

High-speed ships are weight sensitive structures and high strength steel, aluminium or composites are preferred building materials. The use of these materials results in larger hull flexibility than more conventional materials. Therefore, for large fast ships, the lowest natural frequencies of the global hull modes can be relatively low compared to the frequency of wave encounter. In this paper, a parameter study is performed to determine the relative importance of hull flexibility and ship length on the wave-induced springing and whipping response of fast monohull vessels.

Key concepts: Springing, Hull, Flexibility (engineering), Structural engineering, Term (time), Engineering, Marine engineering, Forensic engineering

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