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Evolution of Extreme Waves and Resonances

Volume I

«

"Galiev presents a comprehensive theory of extreme waves—unexpectedly appearing and disappearing waves with large amplitudes—a topic gaining attention especially in the last 20 years. Fundamental ingredients in such waves are nonlinearities (geometric or material) and behavior near and past resonance (hence large amplitudes). The theory is applied to ocean waves and optical physics…Some important experiments are drawn from the literature (e.g., Euler's work on the elastica, Darwin's observations on tsunami)."

J. Lambropoulos, Choice Reviews October 2021, USA

»

The theory of waves is generalized on cases of strongly nonlinear waves, multivalued waves, and particle-waves. The appearance of these waves in various continuous media and physical fields is explained by resonances and nonlinearity effects. Les mer

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The theory of waves is generalized on cases of strongly nonlinear waves, multivalued waves, and particle-waves. The appearance of these waves in various continuous media and physical fields is explained by resonances and nonlinearity effects. Extreme waves emerging in different artificial and natural systems from atom scale to the Universe are explored. Vast amounts of experimental data and comparisons of them with the results of the developed theory are presented.



The book was written for graduate students as well as for researchers and engineers in the fields of geophysics, nonlinear wave studies, cosmology, physical oceanography, and ocean and coastal engineering. It is designed as a professional reference for those working in the wave analysis and modeling fields.



Detaljer

Forlag
CRC Press
Innbinding
Innbundet
Språk
Engelsk
Sider
508
ISBN
9780367480646
Utgivelsesår
2020
Format
23 x 16 cm

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«

"Galiev presents a comprehensive theory of extreme waves—unexpectedly appearing and disappearing waves with large amplitudes—a topic gaining attention especially in the last 20 years. Fundamental ingredients in such waves are nonlinearities (geometric or material) and behavior near and past resonance (hence large amplitudes). The theory is applied to ocean waves and optical physics…Some important experiments are drawn from the literature (e.g., Euler's work on the elastica, Darwin's observations on tsunami)."

J. Lambropoulos, Choice Reviews October 2021, USA

»

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