Finite Elements of Nonlinear Continua

Finite Elements of Nonlinear Continua

by J. T. Oden
Finite Elements of Nonlinear Continua

Finite Elements of Nonlinear Continua

by J. T. Oden

eBook

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Overview

Geared toward undergraduate and graduate students, this text extends applications of the finite element method from linear problems in elastic structures to a broad class of practical, nonlinear problems in continuum mechanics. It treats both theory and applications from a general and unifying point of view.
The text reviews the thermomechanical principles of continuous media and the properties of the finite element method, and then brings them together to produce discrete physical models of nonlinear continua. The mathematical properties of these models are analyzed, along with the numerical solution of the equations governing the discrete model. Though the theory and methods are sufficiently general to be applied to any nonlinear problem, emphasis has been placed on problems in finite elasticity, viscoelasticity, heat conduction, and thermoviscoelasticity. Problems in rarefied gas dynamics and nonlinear partial differential equations are also examined.
Other topics include topological properties of finite element models, applications to linear and nonlinear boundary value problems, and discrete models of nonlinear thermomechanical behavior of dissipative media. This comprehensive text is valuable not only to students of structural analysis and continuum mechanics but also to professionals researching the numerical analysis of continua

Product Details

ISBN-13: 9780486317908
Publisher: Dover Publications
Publication date: 04/15/2013
Series: Dover Civil and Mechanical Engineering
Sold by: Barnes & Noble
Format: eBook
Pages: 448
File size: 23 MB
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Table of Contents

I. Preliminary Discussions
1. Introduction
2. The Finite-Element Concept
3. Mechanics of Continua
4. Kinematic Preliminaries
5. Kinetic Preliminaries
II. Theory of Finite Elements
6. Introduction to the Concept of Finite Elements
7. Finite-Element Models of General Functions
8. Higher-Order Representations
9. Theory of Conjugate Approximations
10. Finite Elements and Interpolation Functions
11. Selected Applications
III. Thermomechanical Behavior of Finite Elements of Continuous Media
12. Thermodynamic Preliminaries
13. Thermomechanics of a Finite Element
14. Constitutive Equations
IV. Finite Elasticity
15. Foundations of the Theory of Elasticity
16. Finite Elements of Elastic Bodies
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