Pragmatic Introduction To The Finite Element Method For Thermal And Stress Analysis, A: With The Matlab Toolkit Sofea

Author:   Petr Krysl (Univ Of California, San Diego, Usa)
Publisher:   World Scientific Publishing Co Pte Ltd
Edition:   New edition
ISBN:  

9789812568762


Pages:   292
Publication Date:   26 October 2006
Format:   Hardback
Availability:   Awaiting stock   Availability explained
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Pragmatic Introduction To The Finite Element Method For Thermal And Stress Analysis, A: With The Matlab Toolkit Sofea


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Overview

This textbook provides an accessible and self-contained description of the Galerkin finite element method for the two important models of continuum mechanics, transient heat conduction and elastodynamics, from formulation of the governing equations to implementation in Matlab.The coverage follows an intuitive approach: the salient features of each initial boundary value problem are reviewed, including a thorough description of the boundary conditions; the method of weighted residuals is applied to derive the discrete equations; and clear examples are introduced to illustrate the method.

Full Product Details

Author:   Petr Krysl (Univ Of California, San Diego, Usa)
Publisher:   World Scientific Publishing Co Pte Ltd
Imprint:   World Scientific Publishing Co Pte Ltd
Edition:   New edition
Dimensions:   Width: 15.50cm , Height: 2.30cm , Length: 23.10cm
Weight:   0.544kg
ISBN:  

9789812568762


ISBN 10:   981256876
Pages:   292
Publication Date:   26 October 2006
Audience:   College/higher education ,  Undergraduate
Format:   Hardback
Publisher's Status:   Active
Availability:   Awaiting stock   Availability explained
The supplier is currently out of stock of this item. It will be ordered for you and placed on backorder. Once it does come back in stock, we will ship it out for you.

Table of Contents

Model of a Taut Wire; The Method of Galerkin; Statics and Dynamics Examples for the Wire Model; Boundary Conditions for the Model of a Taut Wire; Model of Heat Conduction; Galerkin Method for the Model of Heat Conduction; Steady-State Heat Conduction Solutions; Transient Heat Conduction Solutions; Expanding the Library of Element Types; Discretization Error, Error Control, and Convergence; Model of Elastodynamics; Galerkin Formulation for Elastodynamics; Finite Elements for True 3-D Problems; Analyzing the Stresses; Plane Strain, Plane Stress, and Axisymmetric Models; Consistency + Stability = Convergence.

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