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This book contains a selected number of papers that were presented at the Second New York City Bridge Conference organized by the Bridge Engineering Association. It represents the state-of-the-art papers from different countries on a wide spectrum of topics in bridge engineering.
Nine chapters by a group of authors run from site investigation to assessment, repair, thermal response, structural types, and joints and substructures.
The world’s aging infrastructure faces unprecedented challenges. Bridges, the vital lifelines of the transportation network, are in need of innovative solutions to combat the effects of increased traffic loads, environmental stress, and the passage of time. This edited volume equips you with the knowledge to design and maintain safer, more durable, and sustainable bridges for the future. Explore advancements in the following aspects of bridge engineering: •Material science: Discover strategies to enhance the longevity of concrete bridges, and explore the potential of next-generation materials. •Fatigue assessment: Learn cutting-edge analytical methods to identify and address fatigue damage in critical bridge components, ensuring public safety and efficient maintenance. •Robotic and automation technologies: Uncover how robotics and automation are revolutionizing bridge repair and maintenance, streamlining processes and optimizing resource allocation. •Structural health monitoring (SHM): Delve into the exciting world of the Internet of Things (IoT) and its application in bridge health monitoring. Learn how wireless sensor networks can provide real-time data for proactive maintenance and informed decision-making. This book is a valuable resource for: •Bridge engineers seeking the latest advancements in design, materials, and monitoring techniques. •Policymakers developing sustainable infrastructure strategies. •Researchers pushing the boundaries of bridge engineering through innovative materials and methods. •Students eager to understand the future of bridge design and construction. Embrace the future of bridge engineering. Ensure a safer and more sustainable tomorrow.
Advanced composite materials for bridge structures are recognized as a promising alternative to conventional construction materials such as steel. After an introductory overview and an assessment of the characteristics of bonds between composites and quasi-brittle structures, Advanced Composites in Bridge Construction and Repair reviews the use of advanced composites in the design and construction of bridges, including damage identification and the use of large rupture strain fiber-reinforced polymer (FRP) composites. The second part of the book presents key applications of FRP composites in bridge construction and repair, including the use of all-composite superstructures for accelerated bridge construction, engineered cementitious composites for bridge decks, carbon fiber-reinforced polymer composites for cable-stayed bridges and for repair of deteriorated bridge substructures, and finally the use of FRP composites in the sustainable replacement of ageing bridge superstructures. Advanced Composites in Bridge Construction and Repair is a technical guide for engineering professionals requiring an understanding of the use of composite materials in bridge construction. Reviews key applications of fiber-reinforced polymer (FRP) composites in bridge construction and repair Summarizes key recent research in the suitability of advanced composite materials for bridge structures as an alternative to conventional construction materials
Bridge Engineering: A Global Perspective is a comprehensive review of how we create and maintain bridges - one of the most vital yet vulnerable parts of our infrastructure - and how we got where we are today.Its 800 illustrated pages in full colourprovide a unique and authoritative reference for practitioners, researchers and students alike on the state-of-the-art of bridge engineering world-wide, from local community footbridges to vast multi-modal crossings between nations.
There are many books on preliminary studies and research in bridge design as well as basic knowledge on bridge engineering, but most books supply the needs of practicing engineers who may have problems in estimating, designing or constructing suspension bridges. Therefore, this book is intended to serve as a source of information for problems related to bridge engineering including sustainable bridge development, traditional approaches and recent advances in highway bridge traffic loading, aesthetic analysis issues in designing a new bridge, applications of various methods for the dissipation of seismic energy for bridges, new technologies of bridge design as well as structural identification of bridges using non-destructive experimental measurement tests.
The book presents the select proceedings of National Conference on Recent Advances in Structural Engineering (NCRASE 2020). Various topics covered in this book include advanced structural materials, computational methods of structures, earthquake resistant analysis and design, analysis and design of structures against wind loads, pre-stressed concrete structures, bridge engineering, experimental methods and techniques of structures, offshore structures, composite structures, smart materials and structures, port and harbor structures, structural dynamics, high rise structures, sustainable materials in the construction technology, advanced structural analysis, extreme loads on structures, innovative structures, and special structures. The book will be useful for researchers and professional working in the field of structural engineering.