Nonlinear Dynamics - Valery N. Pilipchuk

Nonlinear Dynamics

Between Linear and Impact Limits
Buch | Softcover
XI, 364 Seiten
2012 | 2010
Springer Berlin (Verlag)
978-3-642-26353-8 (ISBN)
160,49 inkl. MwSt
This book examines nonlinear dynamic analyses based
on the existence of strongly nonlinear but simple counterparts to
the linear models and tools. Discusses possible application to
periodic elastic structures with non-smooth or discontinuous
characteristics.
Nonlinear Dynamics represents a wide interdisciplinary area of research dealing with a variety of "unusual" physical phenomena by means of nonlinear differential equations, discrete mappings, and related mathematical algorithms. However, with no real substitute for the linear superposition principle, the methods of Nonlinear Dynamics appeared to be very diverse, individual and technically complicated. This book makes an attempt to find a common ground for nonlinear dynamic analyses based on the existence of strongly nonlinear but quite simple counterparts to the linear models and tools. It is shown that, since the subgroup of rotations, harmonic oscillators, and the conventional complex analysis generate linear and weakly nonlinear approaches, then translations and reflections, impact oscillators, and hyperbolic (Clifford's) algebras must give rise to some "quasi impact" methodology. Such strongly nonlinear methods are developed in several chapters of this book based on the idea ofnon-smooth time substitutions. Although most of the illustrations are based on mechanical oscillators, the area of applications may include also electric, electro-mechanical, electrochemical and other physical models generating strongly anharmonic temporal signals or spatial distributions. Possible applications to periodic elastic structures with non-smooth or discontinuous characteristics are outlined in the final chapter of the book.

Part 1 Introduction.- Part 2 Smooth Oscillating Processes.- Part 3 Nonsmooth Processes as Asymptotic Limits.- Part 4 Nonsmooth Temporal Transformations (NSTT).- Part 5 Sawtooth Power Series.- Part 6 NSTT for Linear and Piecewise-Linear Systems.- Part 7 Periodic and Transient Nonlinear Dynamics under Discontinuous Loading.- Part 8 Strongly Nonlinear Vibrations.- Part 9 Strongly Nonlinear Waves.- Part 10 Impact Modes and Parameter Variations.- Part 11 Principal Trajectories of Forced Vibrations.- Part 12 NSTT and Shooting Method for Periodic Motions.- Part 13 Essentially Non-periodic Processes.- Part 14 Spatially-Oscillating Structures

From the reviews:

"This book is based on a series of papers which the author published earlier. The main subject of this book is the concept of non-smooth time transformations (NSTT) to describe periodic solutions of essentially nonlinear differential equations. ... This book is suitable for scientists interested in applied mathematics, in particular those interested in constructing (approximations of) periodic solutions for differential equations." (Wim T. van Horssen, Mathematical Reviews, Issue 2012 j)

"The content of this book is built on a new physical idea that the effectiveness of linear and weakly nonlinear dynamic theories is due to the spatio-temporal nature of harmonic motions associated with subgroup of rigid-body rotations. ... this original book will be of interest to the experts, professors and post-graduate students in various areas of nonlinear physics, fundamental and engineering mechanics, applied mathematics, and other fields of research dealing with nonlinear dynamic models, non-smooth or discontinuous processes." (Anatoly Martynyuk, Zentralblatt MATH, Vol. 1202, 2011)

Erscheint lt. Verlag 28.6.2012
Reihe/Serie Lecture Notes in Applied and Computational Mechanics
Zusatzinfo XI, 364 p.
Verlagsort Berlin
Sprache englisch
Maße 155 x 235 mm
Gewicht 562 g
Themenwelt Naturwissenschaften Physik / Astronomie Mechanik
Technik Maschinenbau
Schlagworte Complexity • Nichtlineare Dynamik • Nonlinear Dynamics • Nonlinear Processes • Non-Smooth Processes • Non-Smooth Temporal Transformations • NSTT • Rotation • Vibration
ISBN-10 3-642-26353-4 / 3642263534
ISBN-13 978-3-642-26353-8 / 9783642263538
Zustand Neuware
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