Review of annual progress of bridge engineering in 2019
Обзор годовых достижений в мостостроении в 2019 году
2020-10-30
SCID: 54.1/ps986f6d
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box girder and cable-supported bridge analysisbridge evaluation and reinforcementconcrete bridgessteel-concrete composite girdersvehicle-bridge interactions
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Abstract (AI)
Abstract Bridge construction is one of the cores of traffic infrastructure construction. To better develop relevant bridge science, this paper introduces the main research progress in China and abroad in 2019 from 13 aspects, including concrete bridges and the high-performance materials, the latest research on steel-concrete composite girders, advances in box girder and cable-supported bridge analysis theories, advance in steel bridges, the theory of bridge evaluation and reinforcement, bridge model tests and new testing techniques, steel bridge fatigue, wind resistance of bridges, vehicle-bridge interactions, progress in seismic design of bridges, bridge hydrodynamics, bridge informatization and intelligent bridge and prefabricated concrete bridge structures.
Key Findings
1
Advances reported include developments in concrete bridges and high-performance materials and research on prefabricated concrete bridge structures.
2
Emerging areas covered are wind resistance, vehicle–bridge interaction, seismic design improvements, bridge informatization and intelligent bridge technologies.
3
Significant progress is noted in steel-concrete composite girders, box girder and cable-supported bridge analysis theories, and steel bridge research including fatigue.
4
The paper highlights advances in bridge evaluation and reinforcement theory, bridge model tests with new testing techniques, and bridge hydrodynamics.
5
The review summarizes main 2019 research progress in bridge engineering across 13 topics, covering both China and international work.
Research Object
Bridge engineering research progress in 2019
Research Subject
Advances and main research developments across bridge engineering topics in 2019, including concrete and high-performance materials, steel–concrete composite girders, box girder and cable-supported bridge analysis, steel bridges, evaluation and reinforcement theory, model testing and new testing techniques, fatigue, wind resistance, vehicle–bridge interaction, seismic design, hydrodynamics, informatization/intelligent bridges, and prefabricated concrete structures
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2020-10-30
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