Bridge Safety, Maintenance and Management in a Life-Cycle Context
Bridge Safety, Maintenance and Management in a Life-Cycle Context
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This book provides a comprehensive guide to life-cycle cost analysis and optimization for bridge management, covering theoretical backgrounds, practical applications, and recent developments in safety, maintenance, and management.
Format: Hardback
Length: 284 pages
Publication date: 17 February 2022
Publisher: Taylor & Francis Ltd
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Bridge management requires a comprehensive approach that considers life-cycle cost analysis and optimization. This field has seen significant advancements, providing a solid foundation of theoretical backgrounds and practical applications for academics, practicing engineers, and researchers alike. Recent developments and applications in safety, maintenance, and management have been extensively explored, emphasizing the importance of a life-cycle context. Additionally, the text delves into the impact of safety, maintenance, management, resilience, sustainability, and climate change effects on individual bridges and bridge networks under various hazards.
The state-of-the-art in life-cycle cost analysis and optimization for bridge management is a crucial aspect of ensuring the long-term viability and safety of bridge infrastructure. By incorporating a comprehensive life-cycle perspective, bridge managers can make informed decisions about design, construction, maintenance, and rehabilitation. This approach allows for the optimization of costs throughout the bridge's lifespan, taking into account factors such as initial construction, operational expenses, maintenance requirements, and eventual decommissioning.
One of the key benefits of life-cycle cost analysis and optimization is the ability to identify cost-saving opportunities. By analyzing the various stages of a bridge's life, managers can identify areas where efficiency can be improved, materials can be substituted, and processes can be streamlined. This not only reduces the overall cost of bridge management but also enhances the sustainability and resilience of the infrastructure.
In addition to cost savings, life-cycle cost analysis and optimization also contribute to improved safety and maintenance practices. By identifying potential hazards and risks at an early stage, managers can implement preventive measures and maintenance strategies to mitigate the impact of these factors. This proactive approach not only enhances the safety of the bridge users but also extends the lifespan of the infrastructure, reducing the need for costly repairs and replacements.
Another important aspect of life-cycle cost analysis and optimization is the consideration of sustainability and climate change effects. As the world becomes increasingly focused on reducing greenhouse gas emissions and promoting sustainable practices, bridge managers must consider the impact of their decisions on the environment. By adopting sustainable design and construction practices, as well as implementing energy-efficient maintenance and management strategies, bridge managers can contribute to the overall sustainability of the transportation sector.
Life-cycle cost analysis and optimization also play a crucial role in the development of resilient and sustainable bridge networks. By analyzing the interdependencies between individual bridges and bridge networks, managers can develop strategies to mitigate the impact of natural disasters, infrastructure failures, and other emergencies. This includes the use of redundant systems, the development of emergency response plans, and the integration of smart technologies to monitor and manage bridge infrastructure.
In conclusion, life-cycle cost analysis and optimization are essential tools for bridge management. By providing a comprehensive understanding of the various stages of a bridge's life, managers can make informed decisions that optimize costs, enhance safety, promote sustainability, and contribute to the development of resilient and sustainable bridge networks. As the transportation sector continues to evolve, the importance of this field will only increase, making it crucial for academics, practicing engineers, and researchers to stay up-to-date with the latest developments and applications.
Weight: 610g
Dimension: 161 x 243 x 20 (mm)
ISBN-13: 9781032052816
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