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High Performance and Optimum Design of Structures and Materials VI

Edited By: S. Hernandez, University of A Coruña, Spain, Member of WIT Board of Directors and S. Syngellakis, Wessex Institute, UK and Member of WIT Board of Directors

Price

$158.00 (free shipping)

ISBN

978-1-78466-497-8

eISBN

978-1-78466-498-5

Pages

approx. 260

Transaction Series

WIT Transactions on The Built Environment

Transaction Volume

216

Published

2025

Format

Hardback

The contributions to this volume cover issues involving advanced types of structures, particularly those based on new concepts or new materials. The latest developments in design, optimisation, manufacturing and experimentation are highlighted. There is also a focus on the search for higher performance sustainable materials as well as on the development of a generation of new materials, which can more easily resist a range of external stimuli or react in a non-conventional manner. Emphasis is placed on intelligent structures and materials as well as the application of computational methods for their modelling, control and management.

Optimisation problems are also covered, including those related to the size, shape and topology of structures and materials. Optimisation techniques have much to offer to those involved in the design of new industrial products. The development of new algorithms and the appearance of powerful commercial computer codes with easy to use graphical interfaces has created a fertile field for the incorporation of optimisation in the design process in all engineering disciplines.

Comprising research papers presented at the 12th International Conference on High Performance and Optimum Design of Structures and Materials, the present volume covers a range of issues among those mentioned above.

High Performance and Optimum Design of Structures and Materials II
High Performance and Optimum Design of Structures and Materials
High Performance and Optimum Design of Structures and Materials V
High Performance and Optimum Design of Structures and Materials III