Perturbation Methods and Nonlinear Phenomena

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Details

This concise text introduces the reader to the use of perturbation methods, able to investigate nonlinear phenomena in continuous (not only discrete) mechanical systems. Distinct from the classic books on perturbation methods, the algorithms are directly illustrated for continuous systems, referring to a very simple case-study as well as to a metamodel, for which Statics, Buckling, Dynamics and Bifurcation behavior are quickly analyzed. Moreover, fundamental mechanical aspects are discussed in dealing with applications. Concepts herein are reinforced with worked examples at the end the book, relevant to several continuous systems.



Illustrates perturbation analysis with straightforward simple examples, able to reveal nonlinear mechanical phenomena Emphasizes computations and concepts of bifurcation analysis and nonlinear dynamics, giving insights on the phenomena Discusses perturbation methods as a straightforward expansion, strained parameter method, and the multiple scale method

Autorentext

Dr. Angelo Luongo is Professor of Solid and Structural Mechanics - Department of Civil, Construction-Architectural and Environmental Engineering Univ. of L'Aquila, Italy.

Dr. Daniele Zulli is Professor of Solid and Structural Mechanics - Department of Civil, Construction-Architectural and Environmental Engineering Univ. of L'Aquila, Italy.

Dr. Manuel Ferretti is Associate Professor of Solid and Structural Mechanics - Department of Civil, Construction-Architectural and Environmental Engineering Univ. of L'Aquila, Italy.

Dr. Francesco D'Annibale is Professor of Solid and Structural Mechanics - Department of Civil, Construction-Architectural and Environmental Engineering Univ. of L'Aquila, Italy.


Inhalt
Introduction.- Conservative static systems.- Non-autonomous dynamical systems.- Autonomous nonconservative dynamical systems.- Nonlinear continuum models.- Perturbation methods for a continuum metamodel.- Solved Problems.- Summary.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783031493966
    • Lesemotiv Verstehen
    • Genre Mechanical Engineering
    • Auflage 1st edition 2024
    • Sprache Englisch
    • Anzahl Seiten 216
    • Herausgeber Springer International Publishing
    • Größe H246mm x B173mm x T18mm
    • Jahr 2024
    • EAN 9783031493966
    • Format Fester Einband
    • ISBN 3031493966
    • Veröffentlichung 23.01.2024
    • Titel Perturbation Methods and Nonlinear Phenomena
    • Autor Angelo Luongo , Francesco D'Annibale , Manuel Ferretti , Daniele Zulli
    • Untertitel Applications to Continuous Mechanical Systems
    • Gewicht 547g

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