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English
ISTE Ltd and John Wiley & Sons Inc
22 December 2022
Understanding and managing damage and cracking in concrete is essential to ensuring the integrity and durability of civil engineering structures.

Both theoretical and practical, this book presents a comprehensive approach to these problems by proposing models and numerical modeling strategies that are treated in a manner that is both simplified and efficient. It proposes a wide variety of applications that are derived from research programs and engineering cases.

This book also addresses many situations, such as monotonic or cyclic behavior, seismic responses, a description of fast dynamic situations and effects due to the maturation of concrete at an early age in massive structures. Numerous detailed exercises are provided to help students to understand modeling and calculation techniques.

Damage and Cracking of Concrete Structures is indeed intended for students, but also for engineers and researchers in the field of mechanics of materials and structures and, more generally, in civil engineering.

By:   , ,
Imprint:   ISTE Ltd and John Wiley & Sons Inc
Country of Publication:   United Kingdom
Dimensions:   Height: 235mm,  Width: 156mm,  Spine: 18mm
Weight:   699g
ISBN:   9781786306999
ISBN 10:   1786306999
Pages:   304
Publication Date:  
Audience:   Professional and scholarly ,  Undergraduate
Format:   Hardback
Publisher's Status:   Active

Jacky Mazars is Emeritus Professor at the Polytechnic Institute – Grenoble Alpes University, France, Associate Professor at the University of Sherbrooke, Canada and Honorary Director of the 3SR laboratory in Grenoble. He was one of the initiators of applying damage mechanics to concrete and has led many original developments towards understanding the behavior of structures under severe loadings. Stéphane Grange is Professor at INSA Lyon, France, and Director of the GEOMAS Civil Engineering Laboratory. His research focuses on the dynamic behavior of structures in interaction with their environment and on nonlinear dynamic numerical modeling.

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