Journal ArticleDOI
Experimental investigation of freak wave actions on a floating platform and effects of the air gap
TLDR
In this article , the effects of the air gap on wave actions and platform responses on oceanic floating platforms were investigated. But the authors focused on two air-gap conditions (i.e., 0.35 H c and 0.2 H c), where H c is the height of the platform column.About:
This article is published in Ocean Engineering.The article was published on 2022-06-01. It has received 6 citations till now. The article focuses on the topics: FREAK & Deck.read more
Citations
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Study on wave slamming characteristics of a typical floating wind turbine under freak waves
TL;DR: In this article , the slamming pressure characteristics of a typical floating wind turbine under freak waves are studied by numerical simulation and experiment using the computational fluid dynamics (CFD) method, which is used to establish the numerical tank.
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Towards an integrated framework for the risk assessment of coastal structures exposed to earthquake and tsunami hazards
TL;DR: In this paper , a conceptual interdisciplinary-based methodology is proposed to support uncertainty-aware, systematic and informed decisions to support risk management can benefit from reinforcing the ties between natural hazards and engineering practitioners, linking science and industry and promoting dialogue between risk analysts and policy-makers.
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Three-dimensional study on the interaction between a container ship and freak waves in beam sea
TL;DR: In this paper , a three-dimensional in-house solver is developed and validated for the freak wave generation and the wave-ship interaction and characteristics of the interaction process, motion responses of the ship and the green water loadings induced by the freak waves are obtained and analyzed.
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SPH simulation and experimental validation of the dynamic response of floating offshore wind turbines in waves
TL;DR: In this article , the SPH method was used to simulate the hydrodynamics of a floating box and a scaled FOWT model interacting with multiple wave conditions, showing good consistency with the experimental data.
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The dynamic response of a Spar-type floating wind turbine under freak waves with different properties
TL;DR: In this paper , the effects of the freak wave on the performance of a floating offshore wind turbine (SFWT) were analyzed in terms of surge, heave, pitch motion, output power, and mooring tension.
References
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Journal ArticleDOI
Laboratory Measurements of Deep-Water Breaking Waves
Ronald J. Rapp,W. K. Melville +1 more
TL;DR: In this paper, a detailed velocity survey of the breaking region was made and ensemble averages taken of the non-stationary flow was taken to investigate the influence of breaking on the evolution of the wave field.
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Violent breaking wave impacts. Part 1: Results from large-scale regular wave tests on vertical and sloping walls
TL;DR: In this paper, the effects of entrained and entrapped air on wave impacts are investigated and the characteristics of the impacts depend on the breaker conditions and four different types of impact are identified and discussed.
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How to excite a rogue wave
TL;DR: In this article, the authors propose initial conditions that facilitate the excitation of rogue waves, which is useful both in attempts to avoid them by seafarers and in generating highly energetic pulses in optical fibers.
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MEETING REPORT | Rogue Waves—The Fourteenth 'Aha Huliko'a Hawaiian Winter Workshop
Journal ArticleDOI
A recent increase in global wave power as a consequence of oceanic warming.
TL;DR: It is shown that global wave power has been increasing and can represent a climate change indicator and results indicate the upper-ocean warming, a consequence of anthropogenic global warming, is changing the global wave climate, making waves stronger.