Nonlinear Random Vibration

Nonlinear Random Vibration
Author: Cho W.S. To
Publisher: CRC Press
Total Pages: 257
Release: 2000-01-01
Genre: Technology & Engineering
ISBN: 1482287269

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This is a systematic presentation of several classes of analytical techniques in non-linear random vibration. The book also includes a concise treatment of Markovian and non-Markovian solutions of non-linear differential equations.

Nonlinear and Random Vibrations

Nonlinear and Random Vibrations
Author: Florea Dincă
Publisher: Academic Press
Total Pages: 424
Release: 1973
Genre: Science
ISBN:

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Regular and Chaotic Oscillations

Regular and Chaotic Oscillations
Author: Polina S. Landa
Publisher: Springer Science & Business Media
Total Pages: 401
Release: 2012-11-12
Genre: Mathematics
ISBN: 3540452524

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This text maps out the modern theory of non-linear oscillations. The material is presented in a non-traditional manner and emphasises the new results of the theory - obtained partially by the author, who is one of the leading experts in the area. Among the topics are: synchronization and chaotization of self-oscillatory systems and the influence of weak random vibration on modification of characteristics and behaviour of the non-linear systems.

Oscillator And Pendulum With A Random Mass

Oscillator And Pendulum With A Random Mass
Author: Moshe Gitterman
Publisher: World Scientific
Total Pages: 157
Release: 2015-01-05
Genre: Science
ISBN: 9814630764

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Stochastic descriptions of a harmonic oscillator can be obtained by adding additive noise, or/and three types of multiplicative noise: random frequency, random damping and random mass. The first three types of noise were intensively studied in many published articles. In this book the fourth case, that of random mass, is considered in the context of the harmonic oscillator and its immediate nonlinear generalization — the pendulum. To our knowledge it is the first book fully dedicated to this problem.Two interrelated methods, the Langevin equation and the Fokker-Planck equations, as well as the Lyapunov stability method are used for the mathematical analysis. After a short introduction, the two main parts of the book describe the different properties of the random harmonic oscillator and the random pendulum with random masses. As an example, the stochastic resonance is studied, where the noise plays an unusual role, increasing the applied weak periodic signal, and also the vibration resonance in dynamic systems, where the role of noise is played by the second high-frequency periodic signal.First and second averaged moments have been calculated for a system with different types of additive and multiplicative noises, which define the stability of a system. The calculations have been extended to two multiplicative noises and to quadratic noise. This book is useful for students and scientists working in different fields of statistical physics.

NUREG/CR.

NUREG/CR.
Author: U.S. Nuclear Regulatory Commission
Publisher:
Total Pages: 116
Release: 1978
Genre: Nuclear energy
ISBN:

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Nonlinear Random Vibration, Second Edition

Nonlinear Random Vibration, Second Edition
Author: Cho W.S. To
Publisher: CRC Press
Total Pages: 314
Release: 2011-08-10
Genre: Technology & Engineering
ISBN: 0415898978

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This second edition of the book, Nonlinear Random Vibration: Analytical Techniques and Applications, expands on the original edition with additional detailed steps in various places in the text. It is a first systematic presentation on the subject. Its features include: • a concise treatment of Markovian and non- Markovian solutions of nonlinear stochastic differential equations, • exact solutions of Fokker-Planck-Kolmogorov equations, • methods of statistical linearization, • statistical nonlinearization techniques, • methods of stochastic averaging, • truncated hierarchy techniques, and • an appendix on probability theory. A special feature is its incorporation of detailed steps in many examples of engineering applications. Targeted audience: Graduates, research scientists and engineers in mechanical, aerospace, civil and environmental (earthquake, wind and transportation), automobile, naval, architectural, and mining engineering.