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dc.contributor.authorKirezci, Cagil
dc.date.accessioned2021-01-26T23:15:21Z
dc.date.available2021-01-26T23:15:21Z
dc.date.issued2020
dc.identifier.urihttp://hdl.handle.net/11343/258836
dc.description© 2020 Cagil Kirezci
dc.description.abstractThe relation between rogue wave occurrence statistics and properties of the directional and unidirectional wind-wave spectrum, described by the JONSWAP spectrum, are investigated. The free surface statistics are obtained from phase-resolving simulations. The stochastic approach to rogue wave occurrence is conducted based on the quantitative indicator parameters, which are designed to represent instabilities in wave-trains. Numerical findings are compared with measurements. Further, extreme value analysis (EVA) has been applied to indicator parameters based on 40 years of global wave hindcast data.
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dc.subjectRogue Waves, Rogue Wave Indicators, Modulational Instability, Phase Resolving Simulations, Fully Nonlinear Simulations, HOSM, Wave Crest Distribution, Wave Height Distributions, Extreme Value Analysis
dc.titleDeveloping the Extreme Wave Indicators for Spectral Model Using Phase Resolving Studies
dc.typePhD thesis
melbourne.affiliation.departmentInfrastructure Engineering
melbourne.affiliation.facultyEngineering
melbourne.thesis.supervisornameAlexander Babanin
melbourne.contributor.authorKirezci, Cagil
melbourne.thesis.supervisorothernameIan Young
melbourne.tes.fieldofresearch1401503 Ocean engineering
melbourne.tes.fieldofresearch2370803 Physical oceanography
melbourne.tes.fieldofresearch3401207 Fundamental and theoretical fluid dynamics
melbourne.tes.fieldofresearch4370799 Hydrology not elsewhere classified
melbourne.accessrightsOpen Access


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