An experimental strategy to investigate high and steep wave impacts and related hydroelasticeffects relevant for offshore structures in steel is proposed. A physical model was shaped as avertical rectangular surface-piercing column mimicking a semi-submersible leg at the scale of 1:40and studied in irregular waves with two different setups, respectively, a rectangular A) rigid and aB) flexible panel installed in the impact zone. The measurements at discrete locations of the rigidand flexible panels are pressure and strain, respectively, synchronized with wave measurements andhigh-speed videos. The steps of the analysis involve preliminary hammer tests in dry flexible paneland the wave tests with setup A) and B) and their comparative analysis so to identify the features ofthe critical wave-impact scenarios, and those of the excited modes and involved added-mass effects.These steps are described using one of the most critical wave-impact scenarios observed in the tests.

Experimental analysis of high and steep wave impacts and related hydroelastic effects relevant for offshore structures in steel

Greco Marilena
2022

Abstract

An experimental strategy to investigate high and steep wave impacts and related hydroelasticeffects relevant for offshore structures in steel is proposed. A physical model was shaped as avertical rectangular surface-piercing column mimicking a semi-submersible leg at the scale of 1:40and studied in irregular waves with two different setups, respectively, a rectangular A) rigid and aB) flexible panel installed in the impact zone. The measurements at discrete locations of the rigidand flexible panels are pressure and strain, respectively, synchronized with wave measurements andhigh-speed videos. The steps of the analysis involve preliminary hammer tests in dry flexible paneland the wave tests with setup A) and B) and their comparative analysis so to identify the features ofthe critical wave-impact scenarios, and those of the excited modes and involved added-mass effects.These steps are described using one of the most critical wave-impact scenarios observed in the tests.
2022
Istituto di iNgegneria del Mare - INM (ex INSEAN)
Inglese
Proceedings of 9th International Conference on HYDROELASTICITY IN MARINE TECHNOLOGY
The 9th International Conference on HYDROELASTICITY IN MARINE TECHNOLOGY
978-88-7617-055-3
Daniele Dessi, Alessandro Iafrati
Sì, ma tipo non specificato
10-13 July 2022
Rome, Italy
Internazionale
Experiments; steep waves; impact scenario; semi-submersible leg; hydroelastic effects
3
restricted
Ahani, Alireza; Abrahamsen Bjørn, Christian; Greco, Marilena
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/412435
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