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9780521020107

Non-Classical Problems in the Theory of Elastic Stability

by
  • ISBN13:

    9780521020107

  • ISBN10:

    0521020107

  • Format: Paperback
  • Copyright: 2005-09-15
  • Publisher: Cambridge University Press

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Summary

When a structure is put under an increasing compressive load, it becomes unstable and buckling occurs. This important work discusses stability analysis and buckling problems and offers practical tools for dealing with uncertainties that exist in real systems. The techniques are based on two complementary theories that are developed in the text: the probabilistic theory of stability and "anti-optimization," a theory that is valid when the necessary information for probabilistic analysis is absent, that is, when only scant data are available. Design engineers, researchers, and graduate students in aerospace, mechanical, marine, and civil engineering concerned with issues of structural integrity will find this book a useful reference source.

Table of Contents

Preface: Why Still Another Book on Stability? ix
1 Mode Localization in Buckling of Structures 1(42)
1.1 Localization in Elastic Plates Due to Misplacement in the Stiffener Location
1(16)
1.2 Localization in a Multi-Span Periodic Column with a Disorder in a Single Span
17(13)
1.3 Localization Phenomenon of Buckling Mode in Stiffened Multi-Span Elastic Plates
30(13)
2 Deterministic Problems of Shells with Variable Thickness 43(64)
2.1 Introductory Remarks
43(10)
2.1.1 Basic Equations for Homogeneous Shells
44(2)
2.1.2 Hybrid Perturbation-Weighted Residuals Method
46(4)
2.1.3 Solution by Finite Difference Method
50(2)
2.1.4 Solution by Godunov-Conte Shooting Method
52(1)
2.1.5 Numerical Results and Discussion
52(1)
2.2 Buckling of an Axially Compressed Imperfect Cylindrical Shell of Variable Thickness
53(18)
2.2.1 Direct Discussion of Energy Criterion
54(3)
2.2.2 Numerical Technique
57(14)
2.3 Axial Buckling of Composite Cylindrical Shells with Periodic Thickness Variation
71(18)
2.4 Effect of the Thickness Variation and Initial Imperfection on Buckling of Composite Cylindrical Shells
89(10)
2.5 Effect of the Dissimilarity in Elastic Moduli on the Buckling
99(8)
2.5.1 Analysis
99(6)
2.5.2 Discussion
105(2)
3 Stochastic Buckling of Structures: Monte Carlo Method 107(68)
3.1 Introductory Remarks
107(2)
3.2 Reliability Approach to the Random Imperfection Sensitivity of Columns
109(18)
3.2.1 Motivation for the Reliability Approach
109(1)
3.2.2 The Linear Problem
110(2)
3.2.3 Deterministic Imperfection Sensitivity: Mixed Quadratic-Cubic Foundation
112(2)
3.2.4 Single-Mode Solution
114(2)
3.2.5 Multi-Mode Solution
116(1)
3.2.6 Buckling Under Random Imperfections– Monte Carlo Method
117(3)
3.2.7 Numerical Examples
120(7)
3.3 Non-Linear Buckling of a Structure with Random Imperfection and Random Axial Compression by a Conditional Simulation Technique
127(10)
3.3.1 Deterministic Procedure
127(2)
3.3.2 Formulation of Basic Random Variables
129(1)
3.3.3 Probabilistic Analysis
130(4)
3.3.4 Numerical Example and Discussion
134(3)
3.4 Reliability of Axially Compressed Cylindrical Shells with Random Axisymmetric Imperfections
137(24)
3.4.1 Preliminary Considerations
137(2)
3.4.2 Probabilistic Properties of Initial Imperfections
139(5)
3.4.3 Simulation of Random Imperfections with Given Probabilistic Properties
144(4)
3.4.4 Simulation of Random Initial Imperfections from Measured Data
148(6)
3.4.5 Computation of the Buckling Loads
154(3)
3.4.6 Comparison of the Monte Carlo Method with the Benchmark Solution
157(4)
3.5 Reliability of Axially Compressed Cylindrical Shells with Nonsymmetric Imperfections
161(14)
3.5.1 Probabilistic Properties and Simulation of the Initial Imperfections for a Finite Shell
161(4)
3.5.2 Multi-Mode Deterministic Analysis for Each Realization of Random Initial Imperfections
165(2)
3.5.3 Numerical Results and Discussion
167(8)
4 Stochastic Buckling of Structures: Analytical and Numerical Non-Monte Carlo Techniques 175(47)
4.1 Asymptotic Analysis of Reliability of Structures in Buckling Context
175(11)
4.1.1 Overview of the Work by Ikeda and Murota
177(2)
4.1.2 Finite Column on a Non-Linear Foundation
179(2)
4.1.3 Application of Ikeda-Murota Theory
181(2)
4.1.4 Axially Compressed Cylindrical Shells
183(3)
4.2 Second-Moment Analysis of the Buckling of Isotropic Shells with Random Imperfections
186(7)
4.3 Use of STAGS to Derive Reliability Functions by Arbocz and Hol
193(3)
4.4 Reliability of Composite Shells by STAGS
196(4)
4.5 Buckling Mode Localization in a Probabilistic Setting
200(10)
4.6 Finite Element Method for Buckling of Structures with Stochastic Elastic Modulus
210(4)
4.7 Stochastic Finite Element Formulation by Zhang and Ellingwood
214(8)
5 Anti-Optimization in Buckling of Structures 222(35)
5.1 incorporation of Uncertainties in Elastic Moduli
223(15)
5.1.1 Basic Equations
223(5)
5.1.2 Extremal Buckling Load Analysis
228(3)
5.1.3 Determination of Convex Set from Measured Data
231(2)
5.1.4 Numerical Examples and Discussion
233(4)
5.1.5 Numerical Analysis by Non-Linear Programming
237(1)
5.2 Critical Contrasting of Probabilistic and Convex Analyses
238(19)
5.2.1 Is There a Contradiction Between Two Methodologies?
238(3)
5.2.2 Deterministic Analysis of a Model Structure for a Specified Initial Imperfection
241(6)
5.2.3 Probabilistic Analysis
247(4)
5.2.4 Non-Stochastic, Anti-Optimization Analysis
251(6)
6 Application of the Godunov-Conte Shooting Method to Buckling Analysis 257(11)
6.1 Introductory Remarks
257(3)
6.2 Brief Outline of Godunov-Conte Method As Applied to Eigenvalue Problems
260(1)
6.3 Application to Buckling of Polar Orthotropic Annular Plate
261(7)
7 Application of Computerized Symbolic Algebra in Buckling Analysis 268(22)
7.1 Introductory Remarks
268(3)
7.2 Brief Review of MATHEMATICA®
271(3)
7.3 Buckling of Polar Orthotropic Circular Plates on Elastic Foundation by Computerized Symbolic Algebra
274(16)
7.3.1 Results Reported in the Literature
274(2)
7.3.2 Statement of the Problem
276(1)
7.3.3 Buckling of Clamped Polar Orthotropic Plates
277(8)
7.3.4 Buckling of Simply Supported Polar Orthotropic Plates
285(3)
7.3.5 Buckling of Free Polar Orthotropic Plates
288(2)
Bibliography 290(37)
Author Index 327(4)
Subject Index 331

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