Buch, Englisch, Band 2, 634 Seiten, Gewicht: 1450 g
Buch, Englisch, Band 2, 634 Seiten, Gewicht: 1450 g
Reihe: Developments in Civil and Foundation Engineering
ISBN: 978-90-247-2516-8
Verlag: Springer
This book is intended to serve all those who are interested in structural opti mization, whether they work in this field or study it for other purposes. Rapid growth of interest in the cognitive aspects of optimization and the increas ing demands that the present day engineer has to meet in modern design have created the need of a monographic treatment of the subject. The vast number and wide range of structural optimization problems formulated and investigated in the last twenty years call for an attempt to sum up the pres ent state of knowledge in this domain and to outline the directions of its further development. The present authors undertook this task, hoping that the result would stimulate further work towards finding new methods and solutions and increasing the range of applications of the optimization methods to structural design. The immediate aim of the book is to present the basic criteria and methods of optimization and to provide a reference guide to the most important publications in the field. The book consists of fourteen chapters. Chapter 1 introduces the basic concepts, definitions and assumptions relating to structural optimization. Chapter 2 gives the foundations of optimization for minimum elastic strain potential or maximum rigidity, and sets a basis for optimization of bar, plate and lattice structures. Chapter 3 presents criteria of strength design and their applications to plane structures.
Zielgruppe
Research
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
I: Criteria of Structural Optimization.- 1 Aims, Basic Concepts and Assumptions.- 2 Optimization for Minimum Potential Energy, Maximum Rigidity and Minimum Deformability.- 3 Uniform Strength Design.- 4 Optimization for Minimum Volume, Weight or Cost.- II: Methods of Structural Optimization.- 5 Introduction to Mathematical Methods of Optimization.- 6 Linear Programming.- 7 Non-linear Programming.- 8 Dynamic Programming.- 9 Stochastic Programming.- 10 Classical Variational Methods. Examples of Application to Optimum Structural Design.- 11 Non-classical Variational Methods of Optimization.- 12 Mathematical Theory of Extremum Problems.- 13 Iterative and Experimental Methods of Shape Optimization of Structures.- III: Bibliographical Survey and Bibliography.- 14 Survey of the Literature of Structural Optimization.- Bibliography of Structural Optimization.- Author index.