Description
Book Synopsis: Long span suspension bridges cost billions. In recent decades, structural health monitoring systems have been developed to measure the loading environment and responses of these bridges in order to assess serviceability and safety while tracking the symptoms of operational incidents and potential damage. This helps ensure the bridge functions properly during a long service life and guards against catastrophic failure under extreme events.
Although these systems have achieved some success, this cutting-edge technology involves many complex topics that present challenges to students, researchers, and engineers alike. Systematically introducing the fundamentals and outlining the advanced technologies for achieving effective long-term monitoring, Structural Health Monitoring of Long-Span Suspension Bridges covers:
- The design of structural health monitoring systems
- Finite element modelling and system identification
- Highway loading monitoring and effects
- Railway loading monitoring and effects
- Temperature monitoring and thermal behaviour
- Wind monitoring and effects
- Seismic monitoring and effects
- SHMS-based rating method for long span bridge inspection and maintenance
- Structural damage detection and test-bed establishment
These are applied in a rigorous case study, using more than ten years' worth of data, to the Tsing Ma suspension bridge in Hong Kong to examine their effectiveness in the operational performance of a real bridge. The Tsing Ma bridge is the world's longest suspension bridge to carry both a highway and railway, and is located in one of the world’s most active typhoon regions.
Bridging the gap between theory and practice, this is an ideal reference book for students, researchers, and engineering practitioners.
Details
Do you want to ensure the safety and functionality of long-span suspension bridges? Look no further than "Structural Health Monitoring of Long-Span Suspension Bridges". This comprehensive book is the ultimate guide to understanding and implementing cutting-edge technologies that effectively monitor the health of these billion-dollar structures. With its wealth of valuable information, this book is a must-have for students, researchers, and engineers alike.
From design to damage detection, this book covers all aspects of structural health monitoring systems. Learn about finite element modeling, system identification, and monitoring the effects of highway, railway, temperature, wind, and seismic conditions. With this knowledge, you'll be equipped to assess serviceability, prevent potential damage, and ensure the long-term safety of suspension bridges.
What sets this book apart is its practical approach. Through a rigorous case study of the Tsing Ma suspension bridge in Hong Kong, you'll see the real-world application of these monitoring techniques. As the world's longest suspension bridge carrying both a highway and railway, the Tsing Ma bridge faces unique challenges in one of the most active typhoon regions. Gain insights from over ten years' worth of data and discover the effectiveness of these technologies in maintaining operational performance.
Bridging the gap between theory and practice, "Structural Health Monitoring of Long-Span Suspension Bridges" is the ideal reference book for anyone involved in bridge inspection, maintenance, and engineering. Don't miss out on the opportunity to enhance your knowledge and make a difference in ensuring the safety of these critical infrastructures. Get your copy now!
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