The interest of the applied mechanics community in chaotic dynamics of engineering systems has exploded in the last fifteen years, although research activity on nonlinear dynamical problems in mechanics started well before the end of the Eighties. It developed first within the general context of the classical theory of nonlinear oscillations, or nonlinear vibrations, and of the relevant engineering applications. This was an extremely fertile field in terms of formulation of mechanical and mathematical models, of development of powerful analytical techniques, and of understanding of a number of basic nonlinear phenomena. At about the same time, meaningful theoretical results highlighting new solution methods and new or complex phenomena in the dynamics of deterministic systems were obtained within dynamical systems theory by means of sophisticated geometrical and computational techniques. In recent years, careful experimental studies have been made to establish the actual occurrence and observability of the predicted dynamic phenomena, as it is vitally needed in all engineering fields. Complex dynamics have been shown to characterize the behaviour of a great number of nonlinear mechanical systems, ranging from aerospace engineering applications to naval applications, mechanical engineering, structural engineering, robotics and biomechanics, and other areas. The International Union of Theoretical and Applied Mechanics grasped the importance of such complex phenomena in the Eighties, when the first IUTAM Symposium devoted to the general topic of nonlinear and chaotic dynamics in applied mechanics and engineering was held in Stuttgart (1989).
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From the reviews:
"The volume under review ... shows which subjects in the field of nonlinear dynamics and control are currently hot research topics in the applied mechanics community. ... There is no doubt that this volume will be great help for everybody, but especially for young scientists wishing to enter this field because it gives a nice state-of-the-art collection of papers on the subject from the engineering point of view." (Hans Troger, Zentralblatt MATH, Vol. 1106 (8), 2007)
(KL ― Key Lecture, P― Poster Presentation) Preface Welcome Address by the Vice-President of IUTAM Obituary I: Bifurcation, Chaos and Control Chaotic Clocks: A Paradigm for the Evolution of Noise in Machines (KL); F.C. Moon Explorations into the Nonlinear Dynamics of a Single DOF System Coupled to a Wideband Autoparametric Vibration Absorber; A.K. Bajaj, A. Vyas, and A. Raman Adaptive Partial Observers with Application to Time-Varying Chaotic Systems (P); D.V. Efimov and A.L. Fradkov Nonlinear Dynamics of a Heavy Material Particle along a Circle which Rotates and Optimal Control (P); K. (Stevanovic) Hedrih Bifurcation and Chaos in Mechanical Applications: A Dynamical Systems Approach to Their Control; S. Lenci and G. Rega Nonlinear Normal Modes and Chaotic Motions in Oscillatory Chains; L.I. Manevitch, O.V. Gendelman and A.V. Savin Patterns of Bifurcation Suppressing Escape at Internal Resonance; G.H.M. van der Heijden and J.M.T Thompson II: Mechanical Systems Spatial Motion of CVTChains (KL); F.Pfeiffer Nonlinear Phenomena in Resonators; B. Balachandran and H. Li Dynamics and Parametric Identification of Geared Rotordynamic Systems; D. Giagopulos, C. Salpistis, and S. Natsiavas Global Bifurcation of Nonlinear Thermoelastic Microbeams Subject to Electrodynamic Actuation; O. Gottlieb and A.R. Champneys Nonlinear Interaction in MHD Bearings under Oscillating Electric Fields; B. Schweizer and J. Wauer Parametrically Excited MEMS-Based Filters; S.W. Shaw, K.L. Turner, J.F. Rhoads, and R. Baskaran The Chaotic Oscillations of High-Speed Milling; G. Stépán, R. Szalai, and S.J. Hogan On the Dynamics of a Railway Freight Wagon Wheelset with Dry Friction Damping; H. True and L. Trzepacz III: Structural Systems Post-Critical Finite, Planar Dynamics of a Circular Arch: Experimental and Theoretical Characterization of Transitions to Nonregular Motions; F. Benedettiniand R. Alaggio Phase Space Warping: A Dynamical Systems Approach to Diagnostics and Prognostics; J.P. Cusumano and D. Chelidze Time Integration Techniques to Investigate the Long-Term Behaviour of Dissipative Structural Systems (P); U Galvanetto and P.B. Bornemann Identification and Construction of Reduced Order Models for Infinite Dimensional Systems in Nonlinear Elastodynamics (P); I.T. Georgiou The Non-Linear Dynamics of Thin Walled Shell Structures; P.B. Gonçalves and Z.J.G.N. del Prado Influence of Boundary Conditions Relaxation on Panel Flutter; R.A. Ibrahim, D.M. Beloiu, and C.L. Pettit Solutions of a Shallow Arch under Fast and Slow Excitations (P); F. Lakrad and M. Belhaq Nonlinear Oscillations of a Buckled Mechanism Used as a Vibration Isolator; R.H. Plaut, L.A. Alloway, and L.N. Virgin IV: Nonsmooth Dynamics Non-Smooth Dynamics of a Double-.Belt Friction Oscillator; P. Casini and F. Vestroni Corner-Collision and Grazing-Sliding Practical Examples of Border-Collision Bifurcations; M. di Bernardo, A.R. Champneys, and P. Kowalczyk Dynamics of Discontinuous Systems with Imperfections and Noise; T. Griffin and S.J. Hogan Stick-Slip Whirl Interaction in Drillstring Dynamics; R.I. Leine and D.H. van Campen The Mapping Dynamics of a Three-PieceWise Linear System under a Periodic Excitation (P); A.C.J. Luo Two Dimensional Map for Impact Oscillator with Drift (P); E.E. Paviovskaia and M. Wiercigroch Dynamics of Mechanical Systems with Soft Impacts; F. Peterka Nonlinear Dynamics of Non-Smooth Mechanical Systems: Theoretical and Experimental Studies; M. Wiercigroch, E.E. Pavlovskaia, and E.V. Karpenko V: Delay and Random Systems Global Dynamics of a Duffing System with Delayed Velocity Feedback; H. Hu Noise-Induced Synchronization and Stochastic Resonance in a Bistable System (P); A. Kovaleva Delay Equations with Fluctuating Delay: Application to Variable Speed Machining; N.
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Taschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The interest of the applied mechanics community in chaotic dynamics of engineering systems has exploded in the last fifteen years, although research activity on nonlinear dynamical problems in mechanics started well before the end of the Eighties. It developed first within the general context of the classical theory of nonlinear oscillations, or nonlinear vibrations, and of the relevant engineering applications. This was an extremely fertile field in terms of formulation of mechanical and mathematical models, of development of powerful analytical techniques, and of understanding of a number of basic nonlinear phenomena. At about the same time, meaningful theoretical results highlighting new solution methods and new or complex phenomena in the dynamics of deterministic systems were obtained within dynamical systems theory by means of sophisticated geometrical and computational techniques. In recent years, careful experimental studies have been made to establish the actual occurrence and observability of the predicted dynamic phenomena, as it is vitally needed in all engineering fields. Complex dynamics have been shown to characterize the behaviour of a great number of nonlinear mechanical systems, ranging from aerospace engineering applications to naval applications, mechanical engineering, structural engineering, robotics and biomechanics, and other areas. The International Union of Theoretical and Applied Mechanics grasped the importance of such complex phenomena in the Eighties, when the first IUTAM Symposium devoted to the general topic of nonlinear and chaotic dynamics in applied mechanics and engineering was held in Stuttgart (1989). 540 pp. Englisch. Codice articolo 9789400788992
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Taschenbuch. Condizione: Neu. This item is printed on demand - Print on Demand Titel. Neuware -The interest of the applied mechanics community in chaotic dynamics of engineering systems has exploded in the last fifteen years, although research activity on nonlinear dynamical problems in mechanics started well before the end of the Eighties. It developed first within the general context of the classical theory of nonlinear oscillations, or nonlinear vibrations, and of the relevant engineering applications. This was an extremely fertile field in terms of formulation of mechanical and mathematical models, of development of powerful analytical techniques, and of understanding of a number of basic nonlinear phenomena. At about the same time, meaningful theoretical results highlighting new solution methods and new or complex phenomena in the dynamics of deterministic systems were obtained within dynamical systems theory by means of sophisticated geometrical and computational techniques. In recent years, careful experimental studies have been made to establish the actual occurrence and observability of the predicted dynamic phenomena, as it is vitally needed in all engineering fields. Complex dynamics have been shown to characterize the behaviour of a great number of nonlinear mechanical systems, ranging from aerospace engineering applications to naval applications, mechanical engineering, structural engineering, robotics and biomechanics, and other areas. The International Union of Theoretical and Applied Mechanics grasped the importance of such complex phenomena in the Eighties, when the first IUTAM Symposium devoted to the general topic of nonlinear and chaotic dynamics in applied mechanics and engineering was held in Stuttgart (1989).Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 540 pp. Englisch. Codice articolo 9789400788992
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Taschenbuch. Condizione: Neu. Druck auf Anfrage Neuware - Printed after ordering - The interest of the applied mechanics community in chaotic dynamics of engineering systems has exploded in the last fifteen years, although research activity on nonlinear dynamical problems in mechanics started well before the end of the Eighties. It developed first within the general context of the classical theory of nonlinear oscillations, or nonlinear vibrations, and of the relevant engineering applications. This was an extremely fertile field in terms of formulation of mechanical and mathematical models, of development of powerful analytical techniques, and of understanding of a number of basic nonlinear phenomena. At about the same time, meaningful theoretical results highlighting new solution methods and new or complex phenomena in the dynamics of deterministic systems were obtained within dynamical systems theory by means of sophisticated geometrical and computational techniques. In recent years, careful experimental studies have been made to establish the actual occurrence and observability of the predicted dynamic phenomena, as it is vitally needed in all engineering fields. Complex dynamics have been shown to characterize the behaviour of a great number of nonlinear mechanical systems, ranging from aerospace engineering applications to naval applications, mechanical engineering, structural engineering, robotics and biomechanics, and other areas. The International Union of Theoretical and Applied Mechanics grasped the importance of such complex phenomena in the Eighties, when the first IUTAM Symposium devoted to the general topic of nonlinear and chaotic dynamics in applied mechanics and engineering was held in Stuttgart (1989). Codice articolo 9789400788992
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