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Bridge Structural Control: Principles, Modeling and Engineering Applications

Autor Yozo Fujino, Dionysius M. Siringoringo
en Limba Engleză Hardback – 16 feb 2027
Bridge Structural Control: Principles, Modeling and Engineering Applications
Large-amplitude vibrations raise two major concerns in structural design: safety and serviceability. Their suppression through vibration control is therefore essential. This need is particularly critical in bridge engineering, where structures are continuously exposed to dynamic excitations from traffic, wind, earthquakes, and pedestrian activities. Driven by the increasing span lengths and flexibility of modern bridges, numerous vibration-control concepts and technologies have been developed. The primary objective of bridge vibration control is to ensure structural safety, maintain serviceability, and achieve reliable performance throughout the design life without compromising economy.
The book addresses bridge vibration-control strategies, from fundamental principles and modeling to practical engineering applications and technologies. The content is summarized from research conducted by the authors and their research groups and also recent contributions from leading scholars to reflect the latest advances in the field. It covers passive, semi-active, hybrid, and active control systems, with detailed discussions of widely used techniques such as passive dampers, tuned mass dampers, tuned liquid dampers, active mass damper, hybrid mass damper and seismic isolation systems. Real-world case studies are presented throughout to illustrate vibration phenomena in various bridge types and the implementation of effective control strategies.
  • Introduction to Bridge Structural Control
  • Energy Dissipation Devices for Passive Control of Bridge Vibration
  • Tuned Mass Dampers for Control of Bridge Vibration
  • Tuned Liquid Dampers for Control of Bridge Vibration
  • Seismic Isolation for Passive Control of Bridge Vibration
  • Passive Control of Wind-Induced Bridge Vibration by Aerodynamic Modifications
  • Hybrid and Semi-Active Controls of Bridge Vibration
  • Semi-Active Controls of Bridge Vibration
  • Active Control Systems for Bridge Vibration
  • Vibration and Control of Cable in Cable-Supported Bridge
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Specificații

ISBN-13: 9781041425519
ISBN-10: 1041425511
Pagini: 456
Ilustrații: 320
Dimensiuni: 178 x 254 mm
Ediția:1
Editura: CRC Press
Colecția CRC Press

Public țintă

Postgraduate and Professional Reference

Cuprins

1. Introduction to Bridge Structural Control  2. Energy Dissipation Devices for Passive Control of Bridge Vibration  3. Tuned Mass Dampers for Control of Bridge Vibration  4. Tuned Liquid Dampers for Control of Bridge Vibration  5. Seismic Isolation for Passive Control of Bridge Vibration  6. Passive Control of Wind-Induced Bridge Vibration by Aerodynamic Modifications  7. Hybrid and Semi-Active Controls of Bridge Vibration  8. Semi-Active Controls of Bridge Vibration  9. Active Control Systems for Bridge Vibration  10.  Vibration and Control of Cable in Cable-Supported Bridge  Appendix A Mechanical Models of Metallic Dampers  Appendix B Basics of Control Algorithms System

Notă biografică

Yozo Fujino, Ph.D is President of Josai University and Professor Emeritus at both The University of Tokyo and Yokohama National University. A world leader in bridge dynamics, control, and monitoring, he has made pioneering contributions to nonlinear vibration modeling, vibration control of cable-supported bridges, pedestrian-induced bridge vibrations, and the development of multiple tuned mass dampers and tuned liquid dampers. More recently, he has advanced vibration-based monitoring of long-span bridges and base-isolated buildings, with significant findings during the 2011 Tohoku Earthquake. He has published over 400 journal papers and 1,000 conference papers and serves on the editorial boards of 15 leading international journals. His distinguished honors include the Medal with Purple Ribbon (2007), Japan Academy (Nippon Gakushi-in) in 2025, and the Japan Academy Prize (2019), where he became only the seventh civil engineer to receive this award in its 109-year history. Internationally, he has received numerous ASCE awards (Raymond C. Reese Prize, Scanlan Medal, George Winter Medal, Moisseiff Award, Housner Medal), the T.Y. Lin Medal, Nishino Medal, IABSE Awards, and delivered the Newmark Distinguished Lecture at UIUC in 2023. He has also served as President of the International Association of Structural Control and Monitoring, Vice President of IABSE, and President of the Asia-Pacific Network for Research in Smart Structures Technology.
Dionysius M. Siringoringo, Ph.D is an IMS Professor at the Institute of Multidisciplinary Sciences, Yokohama National University, Japan. He received his Ph.D. from the University of Tokyo where he later served as Assistant Professor. His research expertise is in bridge vibration, system identification, structural health monitoring of bridges, seismic and wind-induced vibration response analysis and control of long-span bridges. He has published hundreds of papers and has involved in numerous research projects, including seismic and wind monitoring of long-span bridges in the Tokyo metropolitan area, studies on vehicle–bridge interaction under earthquakes and strong winds, seismic monitoring using wireless sensor networks, vision-based vibration measurement, pedestrian-induced bridge vibration, and seismic monitoring of base-isolated bridges. His work has been recognized with multiple awards, including the JSCE Tanaka Award for Best Paper, the IABSE Outstanding Scientific Research Paper Award, the Japan Association of Wind Engineering (JAWE) Award, the International Association of Structural Control and Monitoring (IASCM)’s Takuji Kobori Award, and the ASCE Bridge Engineering Best Reviewer Award.
 

Descriere

The book addresses bridge vibration-control strategies, from research conducted by the authors and their research groups and also recent contributions from leading scholars to reflect the latest advances in the field.