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Shocks, Singularities and Oscillations in Nonlinear Optics and Fluid Mechanics, Colombini Ferruccio, Del Santo Daniele, Lannes David


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Автор: Colombini Ferruccio, Del Santo Daniele, Lannes David
Название:  Shocks, Singularities and Oscillations in Nonlinear Optics and Fluid Mechanics
ISBN: 9783319848044
Издательство: Springer
Классификация:






ISBN-10: 3319848046
Обложка/Формат: Paperback
Страницы: 308
Вес: 0.46 кг.
Дата издания: 28.06.2018
Серия: Springer indam series
Язык: English
Издание: Softcover reprint of
Иллюстрации: 20 tables, color; 15 illustrations, color; 2 illustrations, black and white; xii, 308 p. 17 illus., 15 illus. in color.
Размер: 22.83 x 16.18 x 1.68 cm
Читательская аудитория: Professional & vocational
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: The book collects the most relevant results from the INdAM Workshop Shocks, Singularities and Oscillations in Nonlinear Optics and Fluid Mechanics held in Rome, September 14-18, 2015.


Nonlinear Oscillations, Dynamical Systems, and Bifurcations of Vector Fields

Автор: Guckenheimer John, Holmes Philip
Название: Nonlinear Oscillations, Dynamical Systems, and Bifurcations of Vector Fields
ISBN: 0387908196 ISBN-13(EAN): 9780387908199
Издательство: Springer
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Цена: 18167.00 р.
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Описание: From the reviews: "This book is concerned with the application of methods from dynamical systems and bifurcation theories to the study of nonlinear oscillations. Chapter 1 provides a review of basic results in the theory of dynamical systems, covering both ordinary differential equations and discrete mappings. Chapter 2 presents 4 examples from nonlinear oscillations. Chapter 3 contains a discussion of the methods of local bifurcation theory for flows and maps, including center manifolds and normal forms. Chapter 4 develops analytical methods of averaging and perturbation theory. Close analysis of geometrically defined two-dimensional maps with complicated invariant sets is discussed in chapter 5. Chapter 6 covers global homoclinic and heteroclinic bifurcations. The final chapter shows how the global bifurcations reappear in degenerate local bifurcations and ends with several more models of physical problems which display these behaviors." #Book Review - Engineering Societies Library, New York#1 "An attempt to make research tools concerning `strange attractors' developed in the last 20 years available to applied scientists and to make clear to research mathematicians the needs in applied works. Emphasis on geometric and topological solutions of differential equations. Applications mainly drawn from nonlinear oscillations." #American Mathematical Monthly#2

Shocks, singularities and oscillations in nonlinear optics and fluid mechanics

Название: Shocks, singularities and oscillations in nonlinear optics and fluid mechanics
ISBN: 3319520415 ISBN-13(EAN): 9783319520414
Издательство: Springer
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Цена: 15372.00 р.
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Описание: The book collects the most relevant results from the INdAM Workshop "Shocks, Singularities and Oscillations in Nonlinear Optics and Fluid Mechanics" held in Rome, September 14-18, 2015.

Singularities of Mappings

Автор: David Mond, Juan Jos? Nu?o-Ballesteros
Название: Singularities of Mappings
ISBN: 3030344398 ISBN-13(EAN): 9783030344399
Издательство: Springer
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Цена: 19564.00 р.
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Описание: The first monograph on singularities of mappings for many years, this book provides an introduction to the subject and an account of recent developments concerning the local structure of complex analytic mappings. Part I of the book develops the now classical real C and complex analytic theories jointly.

Integral Dynamical Models: Singularities, Signals and Control

Автор: Sidorov Denis
Название: Integral Dynamical Models: Singularities, Signals and Control
ISBN: 9814619183 ISBN-13(EAN): 9789814619189
Издательство: World Scientific Publishing
Цена: 12514.00 р.
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Описание: This volume provides a broad introduction to nonlinear integral dynamical models and new classes of evolutionary integral equations.

Singularities in Fluids, Plasmas and Optics

Автор: Russel Caflisch; George C. Papanicolaou
Название: Singularities in Fluids, Plasmas and Optics
ISBN: 9401048940 ISBN-13(EAN): 9789401048941
Издательство: Springer
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Цена: 27950.00 р.
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Описание: Proceedings of the NATO Advanced Research Workshop, Heraklion, Greece, July 6-10, 1992

Digital Processing of Random Oscillations

Автор: Viacheslav Karmalita
Название: Digital Processing of Random Oscillations
ISBN: 3110625008 ISBN-13(EAN): 9783110625004
Издательство: Walter de Gruyter
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Цена: 16727.00 р.
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Описание: This book deals with the autoregressive method for digital processing of random oscillations. The method is based on a one-to-one transformation of the numeric factors of the Yule series model to linear elastic system characteristics. This parametric approach allowed to develop a formal processing procedure from the experimental data to obtain estimates of logarithmic decrement and natural frequency of random oscillations. A straightforward mathematical description of the procedure makes it possible to optimize a discretization of oscillation realizations providing efficient estimates. The derived analytical expressions for confidence intervals of estimates enable a priori evaluation of their accuracy. Experimental validation of the method is also provided. Statistical applications for the analysis of mechanical systems arise from the fact that the loads experienced by machineries and various structures often cannot be described by deterministic vibration theory. Therefore, a sufficient description of real oscillatory processes (vibrations) calls for the use of random functions. In engineering practice, the linear vibration theory (modeling phenomena by common linear differential equations) is generally used. This theory’s fundamental concepts such as natural frequency, oscillation decrement, resonance, etc. are credited for its wide use in different technical tasks. In technical applications two types of research tasks exist: direct and inverse. The former allows to determine stochastic characteristics of the system output X(t) resulting from a random process E(t) when the object model is considered known. The direct task enables to evaluate the effect of an operational environment on the designed object and to predict its operation under various loads. The inverse task is aimed at evaluating the object model on known processes E(t) and X(t), i.e. finding model (equations) factors. This task is usually met at the tests of prototypes to identify (or verify) its model experimentally. To characterize random processes a notion of "shaping dynamic system" is commonly used. This concept allows to consider the observing process as the output of a hypothetical system with the input being stationary Gauss-distributed ("white") noise. Therefore, the process may be exhaustively described in terms of parameters of that system. In the case of random oscillations, the "shaping system" is an elastic system described by the common differential equation of the second order: X ?(t)+2hX ?(t)+ ?_0^2 X(t)=E(t), where ?0 = 2?/Т0 is the natural frequency, T0 is the oscillation period, and h is a damping factor. As a result, the process X(t) can be characterized in terms of the system parameters – natural frequency and logarithmic oscillations decrement ? = hT0 as well as the process variance. Evaluation of these parameters is subjected to experimental data processing based on frequency or time-domain representations of oscillations. It must be noted that a concept of these parameters evaluation did not change much during the last century. For instance, in case of the spectral density utilization, evaluation of the decrement values is linked with bandwidth measurements at the points of half-power of the observed oscillations. For a time-domain presentation, evaluation of the decrement requires measuring covariance values delayed by a time interval divisible by T0. Both estimation procedures are derived from a continuous description of research phenomena, so the accuracy of estimates is linked directly to the adequacy of discrete representation of random oscillations. This approach is similar a concept of transforming differential equations to difference ones with derivative approximation by corresponding finite differences. The resulting discrete model, being an approximation, features a methodical error which can be decreased but never eliminated. To render such a presentation more accurate it is imperative to decrease the discretization interval and to increase realization size growing requirements for computing power. The spectral density and covariance function estimates comprise a non-parametric (non-formal) approach. In principle, any non-formal approach is a kind of art i.e. the results depend on the performer’s skills. Due to interference of subjective factors in spectral or covariance estimates of random signals, accuracy of results cannot be properly determined or justified. To avoid the abovementioned difficulties, the application of linear time-series models with well-developed procedures for parameter estimates is more advantageous. A method for the analysis of random oscillations using a parametric model corresponding discretely (no approximation error) with a linear elastic system is developed and presented in this book. As a result, a one-to-one transformation of the model’s numerical factors to logarithmic decrement and natural frequency of random oscillations is established. It allowed to develop a formal processing procedure from experimental data to obtain the estimates of ? and ?0. The proposed approach allows researchers to replace traditional subjective techniques by a formal processing procedure providing efficient estimates with analytically defined statistical uncertainties.

Singularities and Oscillations

Автор: Jeffrey Rauch; Michael Taylor
Название: Singularities and Oscillations
ISBN: 0387982000 ISBN-13(EAN): 9780387982007
Издательство: Springer
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Цена: 20962.00 р.
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Описание: This volume contains a multiplicity of approaches brought to bear on problems varying from the formation of caustics and the propagation of waves at a boundary, to the examination of viscous boundary layers.


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