Key Parameters and Form-Finding of an Innovative Prefabricated Steel Bridge

Accelerated bridge construction is desired in urban areas or after natural disasters, thus, it has drawn the attention of the bridge community and transportation agencies worldwide. It has lead to the advancement of accelerated construction techniques using prefabricated bridge elements. In this pap...

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Main Authors: Pei Chi, Zhebin Dai, Jun Dong
Format: Article
Language:English
Published: RTU Press 2015-09-01
Series:The Baltic Journal of Road and Bridge Engineering
Subjects:
Online Access:https://bjrbe-journals.rtu.lv/article/view/3440
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spelling doaj-5dfb414429d94404bed46755c980352e2020-11-25T03:10:10ZengRTU PressThe Baltic Journal of Road and Bridge Engineering1822-427X1822-42882015-09-0110322422910.3846/bjrbe.2015.281884Key Parameters and Form-Finding of an Innovative Prefabricated Steel BridgePei Chi0Zhebin Dai1Jun Dong2Institute of Steel Structures, Nanjing Tech University, No. 30 Puzhu Road(s), 211816 Nanjing, ChinaInstitute of Steel Structures, Nanjing Tech University, No. 30 Puzhu Road(s), 211816 Nanjing, ChinaInstitute of Steel Structures, Nanjing Tech University, No. 30 Puzhu Road(s), 211816 Nanjing, ChinaAccelerated bridge construction is desired in urban areas or after natural disasters, thus, it has drawn the attention of the bridge community and transportation agencies worldwide. It has lead to the advancement of accelerated construction techniques using prefabricated bridge elements. In this paper, an innovative self-balanced bridge structure consisting of assembly truss units, flexible cables, and struts is proposed. All components of this truss string structure are fabricated in the precast plant before being shipped to the construction site, therefore reducing the amount of labor and time on-site significantly. The mechanical performance of this structure is studied with three-dimensional finite-element method under the influence of key parameters such as the number of struts, the distance between struts, sag-span ratio, and initial pretension. Parametric analysis of 6 pedestrian bridge models with typical span shows that the optimized structure form reduces steel consumption by up to 59.4% compared to regular truss structures.https://bjrbe-journals.rtu.lv/article/view/3440bridgesprefabricated bridgeaccelerated bridge constructiontruss string structureparametric analysisform-finding
collection DOAJ
language English
format Article
sources DOAJ
author Pei Chi
Zhebin Dai
Jun Dong
spellingShingle Pei Chi
Zhebin Dai
Jun Dong
Key Parameters and Form-Finding of an Innovative Prefabricated Steel Bridge
The Baltic Journal of Road and Bridge Engineering
bridges
prefabricated bridge
accelerated bridge construction
truss string structure
parametric analysis
form-finding
author_facet Pei Chi
Zhebin Dai
Jun Dong
author_sort Pei Chi
title Key Parameters and Form-Finding of an Innovative Prefabricated Steel Bridge
title_short Key Parameters and Form-Finding of an Innovative Prefabricated Steel Bridge
title_full Key Parameters and Form-Finding of an Innovative Prefabricated Steel Bridge
title_fullStr Key Parameters and Form-Finding of an Innovative Prefabricated Steel Bridge
title_full_unstemmed Key Parameters and Form-Finding of an Innovative Prefabricated Steel Bridge
title_sort key parameters and form-finding of an innovative prefabricated steel bridge
publisher RTU Press
series The Baltic Journal of Road and Bridge Engineering
issn 1822-427X
1822-4288
publishDate 2015-09-01
description Accelerated bridge construction is desired in urban areas or after natural disasters, thus, it has drawn the attention of the bridge community and transportation agencies worldwide. It has lead to the advancement of accelerated construction techniques using prefabricated bridge elements. In this paper, an innovative self-balanced bridge structure consisting of assembly truss units, flexible cables, and struts is proposed. All components of this truss string structure are fabricated in the precast plant before being shipped to the construction site, therefore reducing the amount of labor and time on-site significantly. The mechanical performance of this structure is studied with three-dimensional finite-element method under the influence of key parameters such as the number of struts, the distance between struts, sag-span ratio, and initial pretension. Parametric analysis of 6 pedestrian bridge models with typical span shows that the optimized structure form reduces steel consumption by up to 59.4% compared to regular truss structures.
topic bridges
prefabricated bridge
accelerated bridge construction
truss string structure
parametric analysis
form-finding
url https://bjrbe-journals.rtu.lv/article/view/3440
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AT zhebindai keyparametersandformfindingofaninnovativeprefabricatedsteelbridge
AT jundong keyparametersandformfindingofaninnovativeprefabricatedsteelbridge
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