Advances in Wave Interaction and Turbulence

Advances in Wave Interaction and Turbulence
Author: Paul A. Milewski,Laslie M. Smith,Fabian Waleffe,Esteban G. Tabak
Publsiher: American Mathematical Soc.
Total Pages: 130
Release: 2001
Genre: Turbulence
ISBN: 9780821827147

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We often think of our natural environment as being composed of very many interacting particles, undergoing individual chaotic motions, of which only very coarse averages are perceptible at scales natural to us. However, we could as well think of the world as being made out of individual waves. This is so not just because the distinction between waves and particles becomes rather blurred at the atomic level, but also because even phenomena at much larger scales are better describedin terms of waves rather than of particles: It is rare in both fluids and solids to observe energy being carried from one region of space to another by a given set of material particles; much more often, this transfer occurs through chains of particles, neither of them moving much, but eachcommunicating with the next, and hence creating these immaterial objects we call waves. Waves occur at many spatial and temporal scales. Many of these waves have small enough amplitude that they can be approximately described by linear theory. However, the joint effect of large sets of waves is governed by nonlinear interactions which are responsible for huge cascades of energy among very disparate scales. Understanding these energy transfers is crucial in order to determine the response oflarge systems, such as the atmosphere and the ocean, to external forcings and dissipation mechanisms which act on scales decades apart. The field of wave turbulence attempts to understand the average behavior of large ensembles of waves, subjected to forcing and dissipation at opposite ends of theirspectrum. It does so by studying individual mechanisms for energy transfer, such as resonant triads and quartets, and attempting to draw from them effects that should not survive averaging. This book presents the proceedings of the AMS-IMS-SIAM Joint Summer Research Conference on Dispersive Wave Turbulence held at Mt. Holyoke College (MA). It drew together a group of researchers from many corners of the world, in the context of a perceived renaissance of the field, driven by heated debate aboutthe fundamental mechanism of energy transfer among large sets of waves, as well as by novel applications-and old ones revisited-to the understanding of the natural world. These proceedings reflect the spirit that permeated the conference, that of friendly scientific disagreement and genuine wonderat the rich phenomenology of waves.

Advances in Coastal and Ocean Engineering

Advances in Coastal and Ocean Engineering
Author: M. Brocchini
Publsiher: World Scientific
Total Pages: 160
Release: 2002
Genre: Science
ISBN: 9789812705297

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This book is a useful source of ideas and information for scientists whose work involves understanding and modelling turbulent flows with free surfaces. It has the following merits: (1) It provides a framework for developing the analysis of this field, which, although important, has received only limited study; (2) It recognizes the importance of the two-phase nature of strongly disturbed free surface flows, with both natural and technological applications; (3) It suggests possible lines of future research (especially experimental) to quantify the characteristics of flow regimes which are mainly known qualitatively at present.

Advances in Wave Turbulence

Advances in Wave Turbulence
Author: Victor Shrira
Publsiher: World Scientific
Total Pages: 294
Release: 2013
Genre: Science
ISBN: 9789814366946

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Wave or weak turbulence is a branch of science concerned with the evolution of random wave fields of all kinds and on all scales, from waves in galaxies to capillary waves on water surface, from waves in nonlinear optics to quantum fluids. In spite of the enormous diversity of wave fields in nature, there is a common conceptual and mathematical core which allows us to describe the processes of random wave interactions within the same conceptual paradigm, and in the same language. The development of this core and its links with the applications is the essence of wave turbulence science (WT) which is an established integral part of nonlinear science.

Nonlinear Waves and Weak Turbulence

Nonlinear Waves and Weak Turbulence
Author: Vladimir Evgenʹevich Zakharov
Publsiher: American Mathematical Soc.
Total Pages: 212
Release: 1998
Genre: Hamiltonian systems
ISBN: 0821841130

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This book is a collection of papers on dynamical and statistical theory of nonlinear wave propagation in dispersive conservative media. Emphasis is on waves on the surface of an ideal fluid and on Rossby waves in the atmosphere. Although the book deals mainly with weakly nonlinear waves, it is more than simply a description of standard perturbation techniques. The goal is to show that the theory of weakly interacting waves is naturally related to such areas of mathematics as Diophantine equations, differential geometry of waves, Poincare normal forms and the inverse scattering method.

Advances In Coastal And Ocean Engineering Vol 8 Interaction Of Strong Turbulence With Free Surfaces

Advances In Coastal And Ocean Engineering  Vol 8  Interaction Of Strong Turbulence With Free Surfaces
Author: Maurizio Brocchini,Philip L F Liu,D Howell Peregrine
Publsiher: World Scientific
Total Pages: 160
Release: 2002-04-17
Genre: Technology
ISBN: 9789814488532

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This book is a useful source of ideas and information for scientists whose work involves understanding and modelling turbulent flows with free surfaces. It has the following merits: (1) It provides a framework for developing the analysis of this field, which, although important, has received only limited study; (2) It recognizes the importance of the two-phase nature of strongly disturbed free surface flows, with both natural and technological applications; (3) It suggests possible lines of future research (especially experimental) to quantify the characteristics of flow regimes which are mainly known qualitatively at present.

Interaction of Strong Turbulence with Free Surfaces

Interaction of Strong Turbulence with Free Surfaces
Author: M. Brocchini,Philip L. F. Liu,D. H. Peregrine
Publsiher: World Scientific Publishing Company Incorporated
Total Pages: 145
Release: 2002-01-01
Genre: Medical
ISBN: 9810249527

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...useful source of ideas and information for scientists whose work involves understanding and modelling turbulent flows with free surfaces

Advanced Numerical Modelling of Wave Structure Interaction

Advanced Numerical Modelling of Wave Structure Interaction
Author: David M Kelly,Angelos Dimakopoulos,Pablo Higuera Caubilla
Publsiher: CRC Press
Total Pages: 260
Release: 2021-04-06
Genre: Technology & Engineering
ISBN: 9781351119535

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This book will serve as a reference guide, and state-of-the-art review, for the wide spectrum of numerical models and computational techniques available to solve some of the most challenging problems in coastal engineering. The topics covered in this book, are explained fundamentally from a numerical perspective and also include practical examples applications. Important classic themes such as wave generation, propagation and breaking, turbulence modelling and sediment transport are complemented by hot topics such as fluid and structure interaction or multi-body interaction to provide an integral overview on numerical techniques for coastal engineering. Through the vision of 10 high impact authors, each an expert in one or more of the fields included in this work, the chapters offer a broad perspective providing several different approaches, which the readers can compare critically to select the most suitable for their needs. Advanced Numerical Modelling of Wave Structure Interaction will be useful for a wide audience, including PhD students, research scientists, numerical model developers and coastal engineering consultants alike.

Wave Turbulence

Wave Turbulence
Author: Sergey Nazarenko
Publsiher: Springer
Total Pages: 279
Release: 2011-08-17
Genre: Science
ISBN: 3642159435

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Wave Turbulence refers to the statistical theory of weakly nonlinear dispersive waves. There is a wide and growing spectrum of physical applications, ranging from sea waves, to plasma waves, to superfluid turbulence, to nonlinear optics and Bose-Einstein condensates. Beyond the fundamentals the book thus also covers new developments such as the interaction of random waves with coherent structures (vortices, solitons, wave breaks), inverse cascades leading to condensation and the transitions between weak and strong turbulence, turbulence intermittency as well as finite system size effects, such as “frozen” turbulence, discrete wave resonances and avalanche-type energy cascades. This book is an outgrow of several lectures courses held by the author and, as a result, written and structured rather as a graduate text than a monograph, with many exercises and solutions offered along the way. The present compact description primarily addresses students and non-specialist researchers wishing to enter and work in this field.