Seismic Response Analysis Methods for Site-Structure Systems

Seismic Response Analysis Methods for Site-Structure Systems

EnglishPaperback / softbackPrint on demand
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Detailed information

In the quest to enhance the robustness and resilience of structures, especially when these are subjected to external stresses and strains, Seismic Response Analysis Methods for Site-Structure Systems serves as a vital reference for advanced students, researchers, and engineering professionals who seek to deepen their knowledge of soil dynamics theory and other earthquake engineering fundamentals underpinning building and infrastructure design and performance in both onshore and offshore environments. The group of experts who authored the volume guide readers through an in-depth, highly technical overview of a variety of systematically presented computational mechanics techniques and sophisticated formulation tools (e.g., 1D finite element artificial boundary method, the stiffness matrix method, methods for absorbing boundary condition when solving the near-field wave propagation problems, methods for seismic wave input, the internal substructure method, integral analysis models in time domain based on the FEM, and more) to model and assess structural behavior under seismic loads. Case studies and other applied examples extend the book’s interest to the practical realm to create new, or to refine existing, measures to mitigate damage or prevent catastrophic losses.
EAN 9780443365485
ISBN 0443365482
Binding Paperback / softback
Publisher Elsevier - Health Sciences Division
Publication date May 11, 2026
Pages 534
Language English
Dimensions 229 x 152
Country United States
Authors Bao, Xin, PhD (Associate Professor, State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian, China); Du, Xiuli, PhD (Vice President, State Key Laboratory of Bridge Safety and Resilience, Beijing University of Technology, Beijing, China); Wang, Piguang, PhD (Professor, Faculty of Architecture, Civil and Transportation Engineering, Beijing University of Technology, Beijing, China); Zhao, Mi, PhD (Director, Institute of Disaster Prevention and Mitigation and Protection Engineering, Faculty of Architecture, Civil and Transportation Engineering, Beijing University of Technology, Beijing, China)
Series Woodhead Publishing Series in Civil and Structural Engineering
Manufacturer information
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