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BOOK EXCERPT:
This book suggests a new common approach to the study of resonance energy transport based on the recently developed concept of Limiting Phase Trajectories (LPTs), presenting applications of the approach to significant nonlinear problems from different fields of physics and mechanics. In order to highlight the novelty and perspectives of the developed approach, it places the LPT concept in the context of dynamical phenomena related to the energy transfer problems and applies the theory to numerous problems of practical importance. This approach leads to the conclusion that strongly nonstationary resonance processes in nonlinear oscillator arrays and nanostructures are characterized either by maximum possible energy exchange between the clusters of oscillators (coherence domains) or by maximum energy transfer from an external source of energy to the chain. The trajectories corresponding to these processes are referred to as LPTs. The development and the use of the LPTs concept a re motivated by the fact that non-stationary processes in a broad variety of finite-dimensional physical models are beyond the well-known paradigm of nonlinear normal modes (NNMs), which is fully justified either for stationary processes or for nonstationary non-resonance processes described exactly or approximately by the combinations of the non-resonant normal modes. Thus, the role of LPTs in understanding and analyzing of intense resonance energy transfer is similar to the role of NNMs for the stationary processes. The book is a valuable resource for engineers needing to deal effectively with the problems arising in the fields of mechanical and physical applications, when the natural physical model is quite complicated. At the same time, the mathematical analysis means that it is of interest to researchers working on the theory and numerical investigation of nonlinear oscillations.
Product Details :
Genre |
: Technology & Engineering |
Author |
: Leonid I. Manevitch |
Publisher |
: Springer |
Release |
: 2017-07-25 |
File |
: 448 Pages |
ISBN-13 |
: 9789811046667 |
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BOOK EXCERPT:
This book presents contributions on the current problems in a number of topical areas of nonlinear dynamics and physics, written by experts from Russia, Ukraine, Israel, Germany, Poland, Italy, the Netherlands, the USA, and France. The book is dedicated to Professor Leonid I. Manevitch, an outstanding scholar in the fields of Mechanics of Solids, Nonlinear Dynamics, and Polymer Physics, on the occasion of his 80th birthday.
Product Details :
Genre |
: Science |
Author |
: Igor V. Andrianov |
Publisher |
: Springer |
Release |
: 2018-07-31 |
File |
: 530 Pages |
ISBN-13 |
: 9783319922348 |
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BOOK EXCERPT:
This book offers up novel research which uses analytical approaches to explore nonlinear features exhibited by various dynamic processes. Relevant to disciplines across engineering and physics, the asymptotic method combined with the multiple scale method is shown to be an efficient and intuitive way to approach mechanics. Beginning with new material on the development of cutting-edge asymptotic methods and multiple scale methods, the book introduces this method in time domain and provides examples of vibrations of systems. Clearly written throughout, it uses innovative graphics to exemplify complex concepts such as nonlinear stationary and nonstationary processes, various resonances and jump pull-in phenomena. It also demonstrates the simplification of problems through using mathematical modelling, by employing the use of limiting phase trajectories to quantify nonlinear phenomena. Particularly relevant to structural mechanics, in rods, cables, beams, plates and shells, as well as mechanical objects commonly found in everyday devices such as mobile phones and cameras, the book shows how each system is modelled, and how it behaves under various conditions. It will be of interest to engineers and professionals in mechanical engineering and structural engineering, alongside those interested in vibrations and dynamics. It will also be useful to those studying engineering maths and physics.
Product Details :
Genre |
: Mathematics |
Author |
: Jan Awrejcewicz |
Publisher |
: CRC Press |
Release |
: 2022-05-10 |
File |
: 506 Pages |
ISBN-13 |
: 9781000581270 |
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BOOK EXCERPT:
Product Details :
Genre |
: Chemistry |
Author |
: |
Publisher |
: |
Release |
: 2002 |
File |
: 2626 Pages |
ISBN-13 |
: UOM:39015057321401 |
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BOOK EXCERPT:
A project by Asia Competitiveness Institute (ACI), Lee Kuan Yew School of Public Policy, National University of Singapore (NUS) on the competitiveness analysis for Indonesian provinces.
Product Details :
Genre |
: Business & Economics |
Author |
: Khee Giap Tan |
Publisher |
: World Scientific Publishing Company |
Release |
: 2016 |
File |
: 0 Pages |
ISBN-13 |
: 9814749397 |
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BOOK EXCERPT:
One of the most important features of nonlinear systems with several degrees of freedom is the presence of internal resonances at certain relations between natural frequencies of different modes. This monograph is the first book devoted predominantly to internal resonances in different mechanical systems including those of practical importance.The main purpose is to consider the internal resonances from the general point of view and to elucidate their role in applied nonlinear dynamics by using an efficient approach based on introducing the complex representation of equations of motion (together with the multiple scale method). Considered here are autonomous and nonautonomous discrete two-degree-of-freedom systems, infinite chains of particles, and continuous systems, including circular rings and cylindrical shells. Specific attention is paid to the case of one-to-one internal resonance in systems with cubic nonlinearities. Steady-state and nonstationary regimes of motion, interaction of the internal and external resonances at forced oscillations, and bifurcations of steady-state modes and their stability are systematically studied.
Product Details :
Genre |
: Science |
Author |
: Arkadiy I. Manevich |
Publisher |
: World Scientific |
Release |
: 2005 |
File |
: 278 Pages |
ISBN-13 |
: 9781860945106 |