IUTAM Symposium on Optimization of Mechanical Systems

IUTAM Symposium on Optimization of Mechanical Systems
Title IUTAM Symposium on Optimization of Mechanical Systems PDF eBook
Author D. Bestle
Publisher Springer Science & Business Media
Total Pages 396
Release 2012-12-06
Genre Technology & Engineering
ISBN 9400901534

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The International Union of Theoretical and Applied Mechanics (IUTAM) initiated and sponsored an International Symposium on Optimization of Mechanical Systems held in 1995 in Stuttgart, Germany. The Symposium was intended to bring together scientists working in different fields of optimization to exchange ideas and to discuss new trends with special emphasis on multi body systems. A Scientific Committee was appointed by the Bureau of IUTAM with the following members: S. Arimoto (Japan) EL. Chernousko (Russia) M. Geradin (Belgium) E.J. Haug (U.S.A.) C.A.M. Soares (Portugal) N. Olhoff (Denmark) W.O. Schiehlen (Germany, Chairman) K. Schittkowski (Germany) R.S. Sharp (U.K.) W. Stadler (U.S.A.) H.-B. Zhao (China) This committee selected the participants to be invited and the papers to be presented at the Symposium. As a result of this procedure, 90 active scientific participants from 20 countries followed the invitation, and 49 papers were presented in lecture and poster sessions.

IUTAM Symposium on Optimization of Mechanical Systems

IUTAM Symposium on Optimization of Mechanical Systems
Title IUTAM Symposium on Optimization of Mechanical Systems PDF eBook
Author Dieter Bestle
Publisher
Total Pages 366
Release 1996
Genre Mathematical optimization
ISBN

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IUTAM Symposium on Interaction Between Dynamics and Control in Advanced Mechanical Systems

IUTAM Symposium on Interaction Between Dynamics and Control in Advanced Mechanical Systems
Title IUTAM Symposium on Interaction Between Dynamics and Control in Advanced Mechanical Systems PDF eBook
Author Dick H. van Campen
Publisher Springer
Total Pages 472
Release 1997-03-31
Genre Science
ISBN

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The proceedings of the April 1996 symposium address a wide variety of applications ranging from vehicle systems to mechatronic systems. Further, they illuminate the relevancy of more fundamental areas such as control of chaos and optimal control. The 51 contributions promote theoretical and applied investigations with respect to the interaction of dynamics and control in advanced engineering applications. Additional topics include motion control, dynamics and bifurcation of nonlinear systems, modelling and dynamics of engineering systems, vibration control, adaptive control, optimization and control, mechatronic systems, modelling control of engineering systems, system identification, and analysis and control of nonlinear systems. Papers are arranged alphabetically, by the first author's last name, and there is an author index only (no subject index). Annotation copyrighted by Book News, Inc., Portland, OR

IUTAM Symposium on Interaction between Dynamics and Control in Advanced Mechanical Systems

IUTAM Symposium on Interaction between Dynamics and Control in Advanced Mechanical Systems
Title IUTAM Symposium on Interaction between Dynamics and Control in Advanced Mechanical Systems PDF eBook
Author Dick H. van Campen
Publisher Springer Science & Business Media
Total Pages 458
Release 2012-12-06
Genre Technology & Engineering
ISBN 9401157782

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During the last decades, applications of dynamical analysis in advanced, often nonlinear, engineering systems have been evolved in a revolutionary way. In this context one can think of applications in aerospace engineering like satellites, in naval engineering like ship motion, in mechanical engineering like rotating machinery, vehicle systems, robots and biomechanics, and in civil engineering like earthquake dynamics and offshore technology. One could continue with this list for a long time. The application of advanced dynamics in the above fields has been possible due to the use of sophisticated computational techniques employing powerful concepts of nonlinear dynamics. These concepts have been and are being developed in mathematics, mechanics and physics. It should be remarked that careful experimental studies are vitally needed to establish the real existence and observability of the predicted dynamical phenomena. The interaction between nonlinear dynamics and nonlinear control in advanced engineering systems is becoming of increasing importance because of several reasons. Firstly, control strategies in nonlinear systems are used to obtain desired dynamic behaviour and improved reliability during operation, Applications include power plant rotating machinery, vehicle systems, robotics, etc. Terms like motion control, optimal control and adaptive control are used in this field of interest. Since mechanical and electronic components are often necessary to realize the desired action in practice, the engineers use the term mechatronics to indicate this field. If the desired dynamic behaviour is achieved by changing design variables (mostly called system parameters), one can think of fields like control of chaos.

IUTAM Symposium on Vibration Control of Nonlinear Mechanisms and Structures

IUTAM Symposium on Vibration Control of Nonlinear Mechanisms and Structures
Title IUTAM Symposium on Vibration Control of Nonlinear Mechanisms and Structures PDF eBook
Author H. Ulbrich
Publisher Springer Science & Business Media
Total Pages 414
Release 2006-01-28
Genre Technology & Engineering
ISBN 1402041616

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During the last decades, the growth of micro-electronics has reduced the cost of computing power to a level acceptable to industry and has made possible sophisticated control strategies suitable for many applications. Vibration c- trol is applied to all kinds of engineering systems to obtain the desired dynamic behavior, improved accuracy and increased reliability during operation. In this context, one can think of applications related to the control of structures’ vib- tion isolation, control of vehicle dynamics, noise control, control of machines and mechanisms and control of ?uid-structure-interaction. One could continue with this list for a long time. Research in the ?eld of vibration control is extremely comprehensive. Pr- lems that are typical for vibration control of nonlinear mechanisms and str- tures arise in the ?elds of modeling systems in such a way that the model is suitable for control design, to choose appropriate actuator and sensor locations and to select the actuators and sensors. Theobjective of the Symposium was to present anddiscuss methodsthat contribute to thesolution of such problems and to demonstrate the state of the art inthe ?eld shown by typical examples. The intention was to evaluate the limits of performance that can beachievedby controlling the dynamics, and to point out gaps in present research and give links for areas offuture research.Mainly, it brought together leading experts from quite different areas presenting theirpoints of view.

Dynamical Problems of Rigid-Elastic Systems and Structures

Dynamical Problems of Rigid-Elastic Systems and Structures
Title Dynamical Problems of Rigid-Elastic Systems and Structures PDF eBook
Author N.V. Banichuk
Publisher Springer Science & Business Media
Total Pages 248
Release 2012-12-06
Genre Science
ISBN 3642844588

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The International Union of Theoretical and Applied Mechanics (IUTAM) initiated and supported an International Symposium on Dynamical Problems for Rigid-elastic Systems and Structures held in 1990 in Moscow, USSR. The Symposium was intended to bring together scientists working in the fields of multibody system dynamics and finite element systems with special emphasis to modeling, simulation, optimization and control. A Scientific Committee was appointed by the Bureau of IUTAM with following members: N.V. Banichuk (USSR). E.J. Haug (USA). Y. Hori (Japan). S. Kaliszky (Hungary), D.M. Klimov (USSR). Chairman, L. Lilov (Bulgaria), F. Niordson (Denmark), B. Roth (USA), W. Schiehlen (Germany), G. Schmidt (Germany), J. Wittenburg (Germany). The chairman invited the participants on recommendation by the Scientific Committee. As a result 48 active scientific participants from 11 countries followed the invitation, and 32 papers were presented in lecture sessions. The available manuscripts were reviewed by the Scientific Committee after the Symposium, and 24 of them are collected in this volume. At the Symposium a tour to the Institute for Problems of Mechanics, USSR Academy of Sciences, was arranged. The scientific lectures were devoted to the following topics: o Modeling and Optimization, o Dynamics of Systems with Elastic Constraints, o Vibrations, o Multibody Systems.

Nonlinear and Stochastic Dynamics of Compliant Offshore Structures

Nonlinear and Stochastic Dynamics of Compliant Offshore Structures
Title Nonlinear and Stochastic Dynamics of Compliant Offshore Structures PDF eBook
Author Seon Mi Han
Publisher Springer Science & Business Media
Total Pages 281
Release 2013-04-17
Genre Technology & Engineering
ISBN 9401599122

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The purpose of this monograph is to show how a compliant offshore structure in an ocean environment can be modeled in two and three di mensions. The monograph is divided into five parts. Chapter 1 provides the engineering motivation for this work, that is, offshore structures. These are very complex structures used for a variety of applications. It is possible to use beam models to initially study their dynamics. Chapter 2 is a review of variational methods, and thus includes the topics: princi ple of virtual work, D'Alembert's principle, Lagrange's equation, Hamil ton's principle, and the extended Hamilton's principle. These methods are used to derive the equations of motion throughout this monograph. Chapter 3 is a review of existing transverse beam models. They are the Euler-Bernoulli, Rayleigh, shear and Timoshenko models. The equa tions of motion are derived and solved analytically using the extended Hamilton's principle, as outlined in Chapter 2. For engineering purposes, the natural frequencies of the beam models are presented graphically as functions of normalized wave number and geometrical and physical pa rameters. Beam models are useful as representations of complex struc tures. In Chapter 4, a fluid force that is representative of those that act on offshore structures is formulated. The environmental load due to ocean current and random waves is obtained using Morison's equa tion. The random waves are formulated using the Pierson-Moskowitz spectrum with the Airy linear wave theory.