Extreme wave statistics of long-crested irregular waves over a shoal
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Publication:4972225
DOI10.1017/jfm.2019.861zbMath1430.76079OpenAlexW2988734159MaRDI QIDQ4972225
Anne Raustøl, Stian Jorde, Karsten Trulsen, Lisa Bæverfjord Rye
Publication date: 25 November 2019
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: http://hdl.handle.net/10852/74633
Hydrology, hydrography, oceanography (86A05) Water waves, gravity waves; dispersion and scattering, nonlinear interaction (76B15)
Related Items (12)
Freak wave in a two-dimensional directional wavefield with bottom topography change. Part 1. Normal incidence wave ⋮ Non-homogeneous analysis of rogue wave probability evolution over a shoal ⋮ Non-homogeneous approximation for the kurtosis evolution of shoaling rogue waves ⋮ Three-dimensional surface gravity waves of a broad bandwidth on deep water ⋮ Variational Boussinesq model for kinematics calculation of surface gravity waves over bathymetry ⋮ Anomalous waves triggered by abrupt depth changes: laboratory experiments and truncated KdV statistical mechanics ⋮ Wave–bottom interaction and extreme wave statistics due to shoaling and de-shoaling of irregular long-crested wave trains over steep seabed changes ⋮ Surface wavepackets subject to an abrupt depth change. Part 1. Second-order theory ⋮ Surface wavepackets subject to an abrupt depth change. Part 2. Experimental analysis ⋮ Why rogue waves occur atop abrupt depth transitions ⋮ Statistical phase transitions and extreme events in shallow water waves with an abrupt depth change ⋮ On normal and non-normal wave statistics implied by a canonical-microcanonical Gibbs ensemble of the truncated KdV system
Cites Work
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- Random Seas and Design of Maritime Structures
- Freak waves in weakly nonlinear unidirectional wave trains over a sloping bottom in shallow water
- Extreme waves induced by strong depth transitions: Fully nonlinear results
- Statistical dynamical model to predict extreme events and anomalous features in shallow water waves with abrupt depth change
- Laboratory evidence of freak waves provoked by non-uniform bathymetry
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