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Engineering Computation of Structures: The Finite Element Method

NETO, Maria Augusta - Personal Name; AMARO, Ana - Personal Name; ROSEIRO, Luis - Personal Name; CIRNE, José - Personal Name; LEAL, Rogério - Personal Name;

This book presents theories and the main useful techniques of the Finite Element Method (FEM), with an introduction to FEM and many case studies of its use in engineering practice. It supports engineers and students to solve primarily linear problems in mechanical engineering, with a main focus on static and dynamic structural problems.

Readers of this text are encouraged to discover the proper relationship between theory and practice, within the finite element method: Practice without theory is blind, but theory without practice is sterile.

Beginning with elasticity basic concepts and the classical theories of stressed materials, the work goes on to apply the relationship between forces, displacements, stresses and strains on the process of modeling, simulating and designing engineered technical systems. Chapters discuss the finite element equations for static, eigenvalue analysis, as well as transient analyses.

Students and practitioners using commercial FEM software will find this book very helpful. It uses straightforward examples to demonstrate a complete and detailed finite element procedure, emphasizing the differences between exact and numerical procedures.


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Detail Information
Series Title
-
Call Number
-
Publisher
: ., 2015
Collation
XIII, 314
Language
English
ISBN/ISSN
978-3-319-17710-6
Classification
NONE
Content Type
text
Media Type
computer
Carrier Type
online resource
Edition
-
Subject(s)
Mechanical Engineering
Computational Mathematics and Numerical Analysis
Mathematics of Computing
Engineering Mechanics
Specific Detail Info
-
Statement of Responsibility
Maria Augusta Neto, Ana Amaro, Luis Roseiro, José Cirne, Rogério Leal
Other Information
Cataloger
agus
Source
-
Other version/related

No other version available

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  • Engineering Computation of Structures: The Finite Element Method
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