
Finite Element Approximation for Optimal Shape, Material and Topology Design
Wiley (Publisher)
2nd Edition
Published on 10. April 1996
Book
Hardback
440 pages
978-0-471-95850-5 (ISBN)
Description
This book addresses the formulation, approximation and numerical solution of optimal shape design problems: from the continuous model through its discretization and approximation results, to sensitivity analysis and numerical realization. Shape optimization of structures is addressed in the first part, using variational inequalities of elliptic type. New results, such as contact shape optimization for bodies made of non-linear material, sensitivity analysis based on isoparametric technique, and analysis of cost functionals related to contact stress distribution are included. The second part presents new concepts of shape optimization based on a fictitious domain approach. Finally, the application of the shape optimization methodology in the material design is discussed. This second edition is a fully revised and up-dated version of Finite Element Method for Optimal Shape Design. Numerous numerical examples illustrate the theoretical results, and industrial applications are given.
More details
Edition
2nd edition
Language
English
Place of publication
New York
United States
Target group
College/higher education
Professional and scholarly
Product notice
sewn/stitched
Cloth over boards
Dimensions
Height: 235 mm
Width: 157 mm
Thickness: 30 mm
Weight
863 gr
ISBN-13
978-0-471-95850-5 (9780471958505)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Previous edition
J. Haslinger | P. Neittaanmaki
Finite Element Approximation for Optimal Shape Design
Theory and Applications
Book
11/1988
Wiley
€49.52
Article exhausted; check for reprint
Persons
J. Haslinger and Pekka Neittaanmaeki are the authors of Finite Element Approximation for Optimal Shape, Material and Topology Design, 2nd Edition, published by Wiley.
Author
Charles University, Prague, Czech Republic
University of Jyvaskyla, Finland
Content
Preliminaries.
Abstract Setting of the Optimal Shape Design Problem and ItsApproximation.
Optimal Shape Design of Systems Governed by a Unilateral BoundaryValue State Problem the Scalar Case.
Approximation of the Optimal Shape Design Problems by FiniteElements the Scalar Case.
Numerical Realization of Optimal Shape Design Problems Associatedwith a Unilateral Boundary Value Problem the Scalar Case.
Shape optimization in Unilateral Boundary Value Problems with a"Flux" Cost Functional.
Optimal Shape Design Contact Problems the Elastic Case.
Shape Optimization of Materially Non-linear Bodies inContact.
Shape Optimization in Problems with Inner Obstacles.
Optimum Composite Material Design.
Topology Optimization in Unilateral Problems.
Appendices.
Bibliography.
Index.
Abstract Setting of the Optimal Shape Design Problem and ItsApproximation.
Optimal Shape Design of Systems Governed by a Unilateral BoundaryValue State Problem the Scalar Case.
Approximation of the Optimal Shape Design Problems by FiniteElements the Scalar Case.
Numerical Realization of Optimal Shape Design Problems Associatedwith a Unilateral Boundary Value Problem the Scalar Case.
Shape optimization in Unilateral Boundary Value Problems with a"Flux" Cost Functional.
Optimal Shape Design Contact Problems the Elastic Case.
Shape Optimization of Materially Non-linear Bodies inContact.
Shape Optimization in Problems with Inner Obstacles.
Optimum Composite Material Design.
Topology Optimization in Unilateral Problems.
Appendices.
Bibliography.
Index.