Reliability and Safety of Cable-Supported Bridges provides a comprehensive application and guidelines for system reliability techniques in cable-supported bridges.
Inhaltsverzeichnis
Introduction. Serviceability Reliability Assessment of Prestressed Concrete Cable-Stayed Bridges Using Intelligent Neural Networks. System Reliability Assessment of A Cable-Stayed Bridge Using an Adaptive Support Vector Regression Method. System Reliability Evaluation of In-Service Cable-Stayed Bridges Subjected to Cable Degradation. Reliability Evaluation of a Cable-Stayed Bridge Subjected to Cable Rupture During Construction. Fatigue Reliability Evaluation of Orthotropic Steel Bridge Decks Based on Site-Specific Weigh-In-Motion Measurements. Probabilistic Fatigue Damage of Orthotropic Steel Deck Details Based on Structural Health Monitoring Data. Fatigue Crack Propagation of Rib-to-Deck Double-Sided Welded Joints of Orthotropic Steel Bridge Decks. Maximum Probabilistic Traffic Load Effects on Large Bridges Based on Long-Term Traffic Monitoring Data. Dynamic Reliability of Cable-Supported Bridges Under Moving Stochastic Traffic Loads. A Deep Belief Network Based Intelligent Approach for Structural Reliability Evaluation and Its Application to Cable-Supported Bridges.