Nonlinear Analysis of Thin-Walled Structures

Nonlinear Analysis of Thin-Walled Structures

EnglishPaperback / softbackPrint on demand
Doyle James F.
Springer-Verlag New York Inc.
EAN: 9781441929105
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This book deals with the computational analysis of thin-walled structures such as aircraft, ships, and containment vessels. Building on the author's earlier book Static and Dynamic Analysis of Structures, it shows how to use computational methods to tackle some of the fundamental problems of structural mechanics, with particular emphasis on nonlinear phenomena. Where the earlier book dealt with linear systems, the central theme running through this volume is the notion that unstable equilibria are associated with motions and large displacements and therefore require a full nonlinear analysis.The discussion begins with an overview of the basic mechanics of deformable bodies, including variational formulations, and then considers the large deflection behavior of shell and frame structures using a finite-element analysis. The second part of the book begins with a summary of linear vibrations of structures, including an introduction to modal analysis; it continues with computational formulations of nonlinear dynamic analyses of structures and refines the concept of dynamic equilibrium in the context of large deflections. The book concludes with a discussion of stability, including the difficult problem of stability of motions in the large.By describing the methods on which commercial software pakckages are based, this book allows an engineer to evaluate the results these computations produce. It therefore should be useful to practicing engineers and graduate students.
EAN 9781441929105
ISBN 144192910X
Binding Paperback / softback
Publisher Springer-Verlag New York Inc.
Publication date December 6, 2010
Pages 513
Language English
Dimensions 235 x 155
Country United States
Readership Professional & Scholarly
Authors Doyle James F.
Illustrations XIV, 513 p. 259 illus.
Edition Softcover reprint of hardcover 1st ed. 2001
Series Mechanical Engineering Series
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