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Cable-stayed bridges

2022
Following a brief history of cable-stayed bridges, this chapter describes the various materials and forms of construction that have been adopted for the major structural components of these bridges, focusing in turn on the cable system, the pylon and the deck.
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Influence of lateral motion of cable stays on cable-stayed bridges

Structural Engineering and Mechanics, 2010
The aim of this paper concerns with the nonlinear analysis of cable-stayed bridges including the vibration effect of cable stays. Two models for the cable stay system are built up in the study. One is the OECS (one element cable system) model in which one single element per cable stay is used and the other is MECS (multi-elements cable system) model ...
P.H. Wang   +3 more
openaire   +1 more source

A Study on Cable-Stayed Bridges

Applied Mechanics and Materials, 2012
Cable-stayed bridges can be recognized as a suitable solution for connecting wide-span crossings. More than 600 cable bridges are constructed in the world till now while this process is in progress and this number is increasing. The span of cable bridges is between 100m to 500m wide usually while length of widest cable bridges has increased up to 1000m
Bahareh Bannazadeh   +2 more
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A Comparative Study on the Economic Characteristics of the Extradosed Cable-Stayed Bridge and Cable Stayed Bridge

Applied Mechanics and Materials, 2015
Aimed at the problem of extradosed cable-stayed bridges economic characteristics,studied extradosed cable-stayed bridges and cable stayed bridges data which has been built in China,statistics, induction, fitting the relation between the consumption of the main materials and the span,clear relationship between the cost and span, indicate that both ...
Fei Xiong, Cong Chun Chen
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Bridges with Multiple Cable-Stayed Spans

Structural Engineering International, 2001
This paper is devoted to a new field of application of cable-stayed bridges: bridges with multiple cable-stayed spans.
openaire   +1 more source

Constructability of Cable‐Stayed Bridges

Journal of Construction Engineering and Management, 1991
The application of cable‐stayed structures has increased during the last few years in North America. The implementation of these new structures has led to serious problems in the design and construction process. This paper provides an analysis of the most significant problems identified by owners, designers, and contractors.
James E. Rowings, Steven L. Kaspar
openaire   +1 more source

Curved cable-stayed bridges

IABSE Congress, Chicago 2008: Creating and Renewing Urban Structures – Tall Buildings, Bridges and Infrastructure, 2008
<p>Designing of curved cable-stayed bridges allows to increase safety of its users (drivers). They also allow to adjust bridge to the existing or planned road communication configuration. Some unexpected behaviour of such structures may appear during its exploitation.
Janusz Tadla   +4 more
openaire   +1 more source

Aesthetics of Cable-Stayed Bridges

Transportation Research Record: Journal of the Transportation Research Board, 2000
Among the various bridge types, cable-stayed bridges offer the most intriguing configurations. By varying the shape of the towers, the arrangement of the cables, and the cross section of the deck girder, it is almost always possible to create a cable-stayed bridge to fit in any given land-scape.
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Vibrations of Cable-Stayed Bridges

Forensic Engineering (2006), 2006
Recently, cable-stayed bridges have become very common in the United States. However, the cables of many of these structures have experienced unforeseen vibrations causing significant damage to what were relatively new structures. The damage in some cases has cost state departments of transportation millions of dollars to inspect, maintain, and repair.
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Cable stayed bridges

Engineering Structures, 1990
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