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231104s2023 cau o 000 0 eng d |
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|a EBLCP
|b eng
|c EBLCP
|d YDX
|d OPELS
|d SFB
|d OCLCO
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|a 1407211631
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|a 9780323972154
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|a 0323972152
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|z 9780323917360
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|z 0323917364
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|a (OCoLC)1407314893
|z (OCoLC)1407211631
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|a GC227
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|a 551.463
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|a Science and engineering of freak waves /
|c edited by Nobuhito Mori, Takuji Waseda, Amin Chabchoub.
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|a San Diego :
|b Elsevier,
|c 2023.
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|a 1 online resource (242 p.)
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|a Description based upon print version of record.
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|a Front Cover -- Science and Engineering of Freak Waves -- Copyright Page -- Contents -- List of contributors -- About the editors -- Preface -- 1 What is a rogue/freak wave? -- Introduction -- Ocean rogue wave observations -- Wave evolution in the ocean -- Causes of rogue waves -- Linear wave focusing -- Nonlinear wave focusing -- Bathymetry focusing -- Wave-current interaction -- Summary -- References -- 2 History of freak/rogue wave research -- Introduction -- The origin of its name -- Weak nonlinear process of the evolution of ocean waves
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|a Marine accidents and reproductions of observed wave fields -- Impact of freak waves on offshore structures and ships -- Warning criteria -- What is relevant from an engineering perspective? -- References -- 3 Long-term in situ measurements of rogue waves -- Introduction -- Lagrangian measurements -- Eulerian measurements -- Discussion -- References -- 4 Measurements 2: space-time measurements of freak waves -- Introduction -- Description of freak waves in space and time -- Sensors for space-time measurements -- Stereo imaging -- Polarimetric imaging -- X-band radars
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|a Space-time records with freak wave occurrence -- Conclusions -- References -- 5 Mechanism 1: nonlinear wave interactions -- Introduction -- Linear random wave theory -- Nonlinear random wave theory -- Unidirectional waves -- Multidirectional waves -- Nonlinear wave height statistics -- Discussion -- Summary -- References -- 6 Mechanism 2: crossing waves -- Introduction -- Phenomena and governing equations for describing crossing seas -- Second-order nonlinear interaction -- Third-order interactions -- Phase-resolving equations for describing crossing seas
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|a Coupled nonlinear Schr�odinger equations -- Coupled Zakharov equations -- Energy-balanced equations for describing crossing seas -- Field and laboratory measurements -- Field measurements -- Laboratory experiments -- Rogue wave predictions in crossing wave fields -- Numerical simulations -- Energy-based equations and modeling of crossing seas -- Potential equations and their solutions -- Nonlinear wave statistics -- On wave height and wave crest distributions -- On skewness of surface elevation -- On kurtosis of surface elevation -- Perspectives -- References -- 7 Mechanism 3: Bathymetry effects
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|a Introduction -- Nonlinear wave theory over uneven bottoms -- Unidirectional wave propagation -- Two-dimensional wave propagation -- Modeling and solutions -- Discussion -- Summary -- References -- 8 Prediction 1: short-term prediction of extreme waves -- Introduction -- Prediction with a nonlinear model -- The model -- Operational implementation -- Prediction with artificial intelligence approaches -- Machine learning models -- Artificial neural network -- Support vector machine -- Random forest -- Probability mapping -- Training, validation, and testing -- Applications -- Conclusion
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|a References
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650 |
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|a Rogue waves.
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|a Vagues sc�el�erates.
|0 (CaQQLa)201-0436866
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|a Electronic books.
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|a Mori, Nobuhito.
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|a Waseda, Takuji.
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|a Chabchoub, Amin.
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|i Print version:
|a Mori, Nobuhito
|t Science and Engineering of Freak Waves
|d San Diego : Elsevier,c2023
|z 9780323917360
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856 |
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|u https://sciencedirect.uam.elogim.com/science/book/9780323917360
|z Texto completo
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