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Finite Element Applications A Practical Guide to the FEM Process / by Michael Okereke, Simeon Keates.

By: Okereke, Michael, autor
Contributor(s): Keates, Simeon, autor
Material type: materialTypeLabelE-bookSeries: (Springer Tracts in Mechanical Engineering, 2195-9862); (Engineering (Springer-11647)).Publisher: Cham : Springer International Publishing, 2018Description: 1 recurso en línea (XXIV, 472 páginas 257 ilustraciones, 199 ilustraciones a color).ISBN: 9783319671253.Subject: Ingeniería de sistemas | Simulación por ordenadorOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Computational Mechanics -- A Brief Introduction to MATLAB -- Direct Stiffness Method -- Design of Simple Finite Element Modelling Solver -- Finite Element Modelling Principles -- Design of Virtual Domains -- Finite Element Meshes -- Boundary Conditions -- Material Response: Measures of Stress and Strain -- Material Response: Constitutive Models and their Implementation -- The Future of Finite Element Modelling.
Abstract: This textbook demonstrates the application of the finite element philosophy to the solution of real-world problems and is aimed at graduate level students, but is also suitable for advanced undergraduate students. An essential part of an engineer's training is the development of the skills necessary to analyse and predict the behaviour of engineering systems under a wide range of potentially complex loading conditions. Only a small proportion of real-life problems can be solved analytically, and consequently, there arises the need to be able to use numerical methods capable of simulating real phenomena accurately. The finite element (FE) method is one such widely used numerical method. Finite Element Applications begins with demystifying the 'black box' of finite element solvers and progresses to addressing the different pillars that make up a robust finite element solution framework. These pillars include: domain creation, mesh generation and element formulations, boundary conditions, and material response considerations. Readers of this book will be equipped with the ability to develop models of real-world problems using industry-standard finite element packages.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TA168 2018 EB (Browse shelf(Opens below)) Acceso electrónico eBook.15112887
Total holds: 0

Computational Mechanics -- A Brief Introduction to MATLAB -- Direct Stiffness Method -- Design of Simple Finite Element Modelling Solver -- Finite Element Modelling Principles -- Design of Virtual Domains -- Finite Element Meshes -- Boundary Conditions -- Material Response: Measures of Stress and Strain -- Material Response: Constitutive Models and their Implementation -- The Future of Finite Element Modelling.

This textbook demonstrates the application of the finite element philosophy to the solution of real-world problems and is aimed at graduate level students, but is also suitable for advanced undergraduate students. An essential part of an engineer's training is the development of the skills necessary to analyse and predict the behaviour of engineering systems under a wide range of potentially complex loading conditions. Only a small proportion of real-life problems can be solved analytically, and consequently, there arises the need to be able to use numerical methods capable of simulating real phenomena accurately. The finite element (FE) method is one such widely used numerical method. Finite Element Applications begins with demystifying the 'black box' of finite element solvers and progresses to addressing the different pillars that make up a robust finite element solution framework. These pillars include: domain creation, mesh generation and element formulations, boundary conditions, and material response considerations. Readers of this book will be equipped with the ability to develop models of real-world problems using industry-standard finite element packages.

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