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Introduction to Finite Element Analysis: Formulation, Verification and Validation (Wiley Series in Computational Mechanics)

Format Post in Model Engineering BY Barna Szabó, Ivo Babuska

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When using numerical simulation to make a decision, how can its reliability be determined? What are the common pitfalls and mistakes when assessing the trustworthiness of computed information, and how can they be avoided?Whenever numerical simulation is employed in connection with engineering decision-making, there is an implied expectation of reliability: one cannot base decisions on computed information without believing that information is reliable enough to support those Using mathematical models to show the reliability of computer-generated information is an essential part of any modelling users of finite element analysis (FEA) software an introduction to verification and validation procedures, this book thoroughly covers the fundamentals of assuring reliability in numerical The renowned authors systematically guide readers through the basic theory and algorithmic structure of the finite element method, using helpful examples and exercises the tools needed to have a working knowledge of the finite element methodIllustrates the concepts and procedures of verification and validation Explains the process of conceptualization supported by virtual experimentationDescribes the convergence characteristics of the h-, p- and hp-methods Covers the hierarchic view of mathematical models and finite element spaces Uses examples and exercises which illustrate the techniques and procedures of quality assurance Ideal for mechanical and structural engineering students, practicing engineers and applied mathematiciansIncludes parameter-controlled examples of solved problems in a companion website

Introduction to Finite Element Analysis: Formulation, Verification and Validation (Wiley Series in Computational Mechanics)

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