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Advanced Topics in Finite Element Analysis of Structures – with Mathematica and MATLAB Computations

Autor MA Bhatti
en Limba Engleză Hardback – 19 ian 2006
A residual approach to advanced topics in finite element analysis of solids and structures Starting from governing differential equations, a unique and consistently weighted residual approach is used to present advanced topics in finite element analysis of structures, such as mixed and hybrid formulations, material and geometric nonlinearities, and contact problems. This book features a hands-on approach to understanding advanced concepts of the finite element method (FEM) through integrated Mathematica(r) and MATLAB(r) exercises. In ten chapters, Advanced Topics in Finite Element Analysis of Structures: with Mathematica(r) and MATLAB(r) Computations covers: * Essential background * Analysis of elastic solids * Solids of revolution * Multifield formulations for beam elements * Multifield formulations for analysis of elastic solids * Plates and shells * Introduction to nonlinear problems * Material nonlinearity * Geometric nonlinearity * Contact problems An associated Web site (wiley.com/go/bhatti) includes expanded computational details of some of the lengthy examples in the text. It also contains live MATLAB(r) files and Mathematica(r) notebooks to overcome the tedious nature of calculations associated with finite elements.
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Specificații

ISBN-13: 9780471648079
ISBN-10: 0471648078
Pagini: 608
Dimensiuni: 190 x 235 x 32 mm
Greutate: 1.17 kg
Editura: Wiley
Locul publicării:Hoboken, United States

Public țintă

Advanced senior and graduate–level students taking advanced courses in finite element analysis. These courses are most commonly found in Civil and Mechanical Engineering departments, but are also taught out of Chemical, Automotive, Biomedical, and Aerospace Engineering departments. Common course names include "Advanced Finite Element Analysis", "Advanced Mechanics for Civil Infrastructure", "Finite Element Analysis II", and "Nonlinear FEA".

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Descriere

Starting from governing differential equations, a unique and consistently weighted residual approach is used to present advanced topics in finite element analysis of structures, such as mixed and hybrid formulations, material and geometric nonlinearities, and contact problems.