This comprehensively studies temperature behaviors of bridges, covering beam, arch, cable-stayed, and suspension bridges and using analytical, numerical, and field monitoring approaches. 25-year field monitoring data of the Tsing Ma Suspension Bridge is presented, the most extensive field data available.
This comprehensively studies temperature behaviors of bridges, covering beam, arch, cable-stayed, and suspension bridges and using analytical, numerical, and field monitoring approaches. 25-year field monitoring data of the Tsing Ma Suspension Bridge is presented, the most extensive field data available.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Yong Xia is a professor in the Department of Civil and Environmental Engineering at the Hong Kong Polytechnic University. He has established health monitoring systems for a wide range of structures, including the the world-longest Hong Kong-Zhuhai-Macao Bridge. He is a council member of the International Society for Structural Health Monitoring of Intelligent Infrastructure and a fellow of The Hong Kong Institution of Engineers. Yi Zhou is an associate professor in the Department of Civil Engineering at the University of Science and Technology Beijing. He serves as a council member of the Institute of Diagnosis Treatment and Maintenance for Engineering at the Architectural Society of China and a research fellow at the National Observation and Research Station of Material Corrosion and Structural Safety of the Hong Kong-Zhuhai-Macao Bridge.
Inhaltsangabe
1. Introduction. 2. Structural Health Monitoring of Bridges. 3. Numerical Analysis of Bridge Temperature Behaviors. 4. Temperature Behaviors of Suspension Bridges. 5. Temperature Behaviors of Cable-stayed Bridges. 6. Temperature Behaviors of Arch Bridges. 7. Temperature Behaviors of Beam Bridges. 8. Long-term Temperature Behaviors of the Tsing Ma Bridge. 9. Temperature Effects on Vibrational Properties of Bridges. 10. Epilogue: Conclusions and Challenges.
1. Introduction. 2. Structural Health Monitoring of Bridges. 3. Numerical Analysis of Bridge Temperature Behaviors. 4. Temperature Behaviors of Suspension Bridges. 5. Temperature Behaviors of Cable-stayed Bridges. 6. Temperature Behaviors of Arch Bridges. 7. Temperature Behaviors of Beam Bridges. 8. Long-term Temperature Behaviors of the Tsing Ma Bridge. 9. Temperature Effects on Vibrational Properties of Bridges. 10. Epilogue: Conclusions and Challenges.
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