Tied-arch bridges
Most Important Structures in this Category
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# | Name | Country | main span |
---|---|---|---|
1 | Qilu Yellow River Bridge | China | 420 m |
2 | Bugrinsky Bridge | Russia | 380 m |
3 | Pentele Bridge | Hungary | 307.9000 m |
4 | Cuijiaying Hanjiang River Bridge | China | 300 m |
5 | Van Brienenoord Bridge | Netherlands | 300 m |
6 | Van Brienenoord Bridge | Netherlands | 287.5000 m |
7 | De Oversteek | Netherlands | 285 m |
8 | Second Ondō Bridge | Japan | 280 m |
9 | Jefferson Barracks Bridge | USA | 277.4000 m |
10 | Jefferson Barracks Bridge | USA | 277.4000 m |
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Literature
- Approximate analysis and optimization of stiffened tied arch bridges. In: Canadian Journal of Civil Engineering / Revue canadienne de génie civil, v. 12, n. 2 (June 1985), pp. 307-315. (1985):
- Arch First and Beam Later: Arch-Rib Integral Installation Construction Technology for Large-Span Tied-Arch Bridge. In: Journal of Construction Engineering and Management, v. 143, n. 8 (August 2017), pp. 04017059. (2017):
- Assessment of erection quality of steel tied arch bridges. Presented at: ARCH'01. 3ème conférence sur les ponts en arc, pp. 917-922. (2001):
- Behavior of Concrete Tied Arch Railway Bridges Under Moving Loads. Presented at: ARCH 2019, 9th International Conference on Arch Bridges, 2-4 October 2019, Porto, Portugal, pp. 185-193. (2019):
- Behaviour of train cars moving across steel tied arch bridges. Presented at: ARCH'01. 3ème conférence sur les ponts en arc, pp. 629-630. (2001):