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Structural Characteristics of 3-Pylon Cable-Stayed Bridge Applying UHPC

 Structural Characteristics of 3-Pylon Cable-Stayed Bridge Applying UHPC
Auteur(s): , , , ,
Présenté pendant 18th IABSE Congress: Innovative Infrastructures – Towards Human Urbanism, Seoul, Korea, 19-21 September 2012, publié dans , pp. 302-309
DOI: 10.2749/222137912805110538
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This paperhas been intended as an introduction to design example of 3-pylon cable-stayed bridge system applying Ultra High Performance Concrete (UHPC) with compressive strength of 180MPa and explan...
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Auteur(s):





Médium: papier de conférence
Langue(s): anglais
Conférence: 18th IABSE Congress: Innovative Infrastructures – Towards Human Urbanism, Seoul, Korea, 19-21 September 2012
Publié dans:
Page(s): 302-309 Nombre total de pages (du PDF): 8
Page(s): 302-309
Nombre total de pages (du PDF): 8
DOI: 10.2749/222137912805110538
Abstrait:

This paperhas been intended as an introduction to design example of 3-pylon cable-stayed bridge system applying Ultra High Performance Concrete (UHPC) with compressive strength of 180MPa and explanation of structural characteristics, benefits, and risksolutionscaused by applying UHPC.

Steel composite and concretecable-stayed bridges werecheckedin order to comparewith UHPC cable-stayed bridge through the construction cost evaluation.

The precast segmental method with launching truss was applied for activating the compressive strength of 180MPa. Stiffened girder needed various checks for ensured safety during construction.

Lastly various types of section weretested for solving vibration problemsof edge girder with low height. The aerodynamic stability had been satisfied after the fairing and baffle set up on external edge girder and in the middle of edge girder, respectively.

Mots-clé:
poutre marginale