A New Multiconstraint Method for Determining the Optimal Cable Stresses in Cable-Stayed Bridges

Cable-stayed bridges are one of the most popular types of long-span bridges. The structural behaviour of cable-stayed bridges is sensitive to the load distribution between the girder, pylons, and cables. The determination of pretensioning cable stresses is critical in the cable-stayed bridge design...

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Main Authors: B. Asgari, S. A. Osman, A. Adnan
Format: Article
Language:English
Published: Hindawi Limited 2014-01-01
Series:The Scientific World Journal
Online Access:http://dx.doi.org/10.1155/2014/503016
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spelling doaj-5eef83b069764f339fee5cafe9d5fe022020-11-25T00:11:18ZengHindawi LimitedThe Scientific World Journal2356-61401537-744X2014-01-01201410.1155/2014/503016503016A New Multiconstraint Method for Determining the Optimal Cable Stresses in Cable-Stayed BridgesB. Asgari0S. A. Osman1A. Adnan2Department of Civil & Structural Engineering, Faculty of Engineering & Built Environment, Universiti Kebangsaan Malaysia (UKM), 43600 Bangi, Selangor, MalaysiaDepartment of Civil & Structural Engineering, Faculty of Engineering & Built Environment, Universiti Kebangsaan Malaysia (UKM), 43600 Bangi, Selangor, MalaysiaFaculty of Civil Engineering, Universiti Teknologi Malaysia (UTM), 81310 Skudai, Johor, MalaysiaCable-stayed bridges are one of the most popular types of long-span bridges. The structural behaviour of cable-stayed bridges is sensitive to the load distribution between the girder, pylons, and cables. The determination of pretensioning cable stresses is critical in the cable-stayed bridge design procedure. By finding the optimum stresses in cables, the load and moment distribution of the bridge can be improved. In recent years, different research works have studied iterative and modern methods to find optimum stresses of cables. However, most of the proposed methods have limitations in optimising the structural performance of cable-stayed bridges. This paper presents a multiconstraint optimisation method to specify the optimum cable forces in cable-stayed bridges. The proposed optimisation method produces less bending moments and stresses in the bridge members and requires shorter simulation time than other proposed methods. The results of comparative study show that the proposed method is more successful in restricting the deck and pylon displacements and providing uniform deck moment distribution than unit load method (ULM). The final design of cable-stayed bridges can be optimised considerably through proposed multiconstraint optimisation method.http://dx.doi.org/10.1155/2014/503016
collection DOAJ
language English
format Article
sources DOAJ
author B. Asgari
S. A. Osman
A. Adnan
spellingShingle B. Asgari
S. A. Osman
A. Adnan
A New Multiconstraint Method for Determining the Optimal Cable Stresses in Cable-Stayed Bridges
The Scientific World Journal
author_facet B. Asgari
S. A. Osman
A. Adnan
author_sort B. Asgari
title A New Multiconstraint Method for Determining the Optimal Cable Stresses in Cable-Stayed Bridges
title_short A New Multiconstraint Method for Determining the Optimal Cable Stresses in Cable-Stayed Bridges
title_full A New Multiconstraint Method for Determining the Optimal Cable Stresses in Cable-Stayed Bridges
title_fullStr A New Multiconstraint Method for Determining the Optimal Cable Stresses in Cable-Stayed Bridges
title_full_unstemmed A New Multiconstraint Method for Determining the Optimal Cable Stresses in Cable-Stayed Bridges
title_sort new multiconstraint method for determining the optimal cable stresses in cable-stayed bridges
publisher Hindawi Limited
series The Scientific World Journal
issn 2356-6140
1537-744X
publishDate 2014-01-01
description Cable-stayed bridges are one of the most popular types of long-span bridges. The structural behaviour of cable-stayed bridges is sensitive to the load distribution between the girder, pylons, and cables. The determination of pretensioning cable stresses is critical in the cable-stayed bridge design procedure. By finding the optimum stresses in cables, the load and moment distribution of the bridge can be improved. In recent years, different research works have studied iterative and modern methods to find optimum stresses of cables. However, most of the proposed methods have limitations in optimising the structural performance of cable-stayed bridges. This paper presents a multiconstraint optimisation method to specify the optimum cable forces in cable-stayed bridges. The proposed optimisation method produces less bending moments and stresses in the bridge members and requires shorter simulation time than other proposed methods. The results of comparative study show that the proposed method is more successful in restricting the deck and pylon displacements and providing uniform deck moment distribution than unit load method (ULM). The final design of cable-stayed bridges can be optimised considerably through proposed multiconstraint optimisation method.
url http://dx.doi.org/10.1155/2014/503016
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