Experimental Study on the System Performance of Adjacent Precast Concrete Box Beam Bridges

Analyses of catastrophic collapse of some adjacent precast concrete box beam bridges reveal the fact that the hinge joints between the adjacent beams were not sufficiently designed. The joint failure caused by deterioration is the result of system reliability deficiency of this type of bridges. To u...

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Main Authors: Yanling Leng, Jinquan Zhang, Ruinian Jiang, Yangjian Xiao
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2020/9708327
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spelling doaj-ce342d7273a640aca81423983a457b722020-11-25T03:20:41ZengHindawi LimitedAdvances in Civil Engineering1687-80861687-80942020-01-01202010.1155/2020/97083279708327Experimental Study on the System Performance of Adjacent Precast Concrete Box Beam BridgesYanling Leng0Jinquan Zhang1Ruinian Jiang2Yangjian Xiao3IMEG Corp., Sioux Falls, SD, USAChongqing Jiaotong University, Chongqing, ChinaDepartment of Engineering Technology & Surveying Engineering, New Mexico State University, Las Cruces, NM, USADepartment of Civil Engineering, Chongqing Jiaotong University, Chongqing, ChinaAnalyses of catastrophic collapse of some adjacent precast concrete box beam bridges reveal the fact that the hinge joints between the adjacent beams were not sufficiently designed. The joint failure caused by deterioration is the result of system reliability deficiency of this type of bridges. To understand the system performance of the bridges, the redundancy and robustness of a bridge model with a scale of 1 ∶ 2, based on the prototype design drawings for 10-meter adjacent box beam bridges in China, were assessed through a system safety evaluation procedure. The result confirmed the assumption that the redundancy and robustness of certain adjacent precast concrete beam bridges did not meet the pertinent requirements proposed in National Cooperative Highway Research Program (NCHRP) reports 406, 458, and 776 as a result of hinge joint failure. To address the current design deficiencies, a system factor is recommended in this paper to calculate the nominal resistance that reflects the level of redundancy of this type of bridges. In addition, a new framework is proposed to address the particular structural feature and topology of adjacent precast concrete beam bridges for the assessment of structural redundancy and robustness, which can reduce the computation complexity compared to existing approaches. The full-range load test performed in this research verified the previous research results on bridge system safety that were mainly based on theoretical analysis and simulations.http://dx.doi.org/10.1155/2020/9708327
collection DOAJ
language English
format Article
sources DOAJ
author Yanling Leng
Jinquan Zhang
Ruinian Jiang
Yangjian Xiao
spellingShingle Yanling Leng
Jinquan Zhang
Ruinian Jiang
Yangjian Xiao
Experimental Study on the System Performance of Adjacent Precast Concrete Box Beam Bridges
Advances in Civil Engineering
author_facet Yanling Leng
Jinquan Zhang
Ruinian Jiang
Yangjian Xiao
author_sort Yanling Leng
title Experimental Study on the System Performance of Adjacent Precast Concrete Box Beam Bridges
title_short Experimental Study on the System Performance of Adjacent Precast Concrete Box Beam Bridges
title_full Experimental Study on the System Performance of Adjacent Precast Concrete Box Beam Bridges
title_fullStr Experimental Study on the System Performance of Adjacent Precast Concrete Box Beam Bridges
title_full_unstemmed Experimental Study on the System Performance of Adjacent Precast Concrete Box Beam Bridges
title_sort experimental study on the system performance of adjacent precast concrete box beam bridges
publisher Hindawi Limited
series Advances in Civil Engineering
issn 1687-8086
1687-8094
publishDate 2020-01-01
description Analyses of catastrophic collapse of some adjacent precast concrete box beam bridges reveal the fact that the hinge joints between the adjacent beams were not sufficiently designed. The joint failure caused by deterioration is the result of system reliability deficiency of this type of bridges. To understand the system performance of the bridges, the redundancy and robustness of a bridge model with a scale of 1 ∶ 2, based on the prototype design drawings for 10-meter adjacent box beam bridges in China, were assessed through a system safety evaluation procedure. The result confirmed the assumption that the redundancy and robustness of certain adjacent precast concrete beam bridges did not meet the pertinent requirements proposed in National Cooperative Highway Research Program (NCHRP) reports 406, 458, and 776 as a result of hinge joint failure. To address the current design deficiencies, a system factor is recommended in this paper to calculate the nominal resistance that reflects the level of redundancy of this type of bridges. In addition, a new framework is proposed to address the particular structural feature and topology of adjacent precast concrete beam bridges for the assessment of structural redundancy and robustness, which can reduce the computation complexity compared to existing approaches. The full-range load test performed in this research verified the previous research results on bridge system safety that were mainly based on theoretical analysis and simulations.
url http://dx.doi.org/10.1155/2020/9708327
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AT jinquanzhang experimentalstudyonthesystemperformanceofadjacentprecastconcreteboxbeambridges
AT ruinianjiang experimentalstudyonthesystemperformanceofadjacentprecastconcreteboxbeambridges
AT yangjianxiao experimentalstudyonthesystemperformanceofadjacentprecastconcreteboxbeambridges
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