Construction and Application of Bridge Expansion and Contraction Installation Replacement Decision System Based on the Analytic Hierarchy Process

Bridge expansion and contraction installation (BECI) has proved to be an indispensable component of bridge structures due to its stability, comfort, and durability benefits. At present, conventional replacement technologies for modular-type, comb plate-type, and seamless-type BECIs are widely applie...

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Main Authors: Minshui Huang, Zian Xu, Liang Li, Yongzhi Lei
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/13/18/4177
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spelling doaj-2ab217b5924a4a87b52869b5ab6fcf722020-11-25T03:56:55ZengMDPI AGMaterials1996-19442020-09-01134177417710.3390/ma13184177Construction and Application of Bridge Expansion and Contraction Installation Replacement Decision System Based on the Analytic Hierarchy ProcessMinshui Huang0Zian Xu1Liang Li2Yongzhi Lei3Wuhan Institute of Technology, School of Civil Engineering and Architecture, Wuhan 430073, ChinaWuhan Institute of Technology, School of Civil Engineering and Architecture, Wuhan 430073, ChinaWuhan Institute of Technology, School of Civil Engineering and Architecture, Wuhan 430073, ChinaWuhan Institute of Technology, School of Civil Engineering and Architecture, Wuhan 430073, ChinaBridge expansion and contraction installation (BECI) has proved to be an indispensable component of bridge structures due to its stability, comfort, and durability benefits. At present, conventional replacement technologies for modular-type, comb plate-type, and seamless-type BECIs are widely applied worldwide. However, it is unfortunate that there remains no systematic research on quantitative assessment approaches for evaluating the overall technical status and selecting optimal replacement methods for existing BECIs. Therefore, considering the installation performance according to functional index evaluations and the economic cost based on life-cycle value assessment (LCVA), a standardized quantitative assessment approach is proposed for optimal replacement method selection in this article. Simultaneously, the other new quantitative assessment method is developed for evaluating the overall technical status of BECIs, which provides a basis for the necessity of replacement. A BECI replacement decision system is constructed, and a corresponding case study illustrates that the proposed system based on the analytic hierarchy process (AHP) in this article proves to be reasonable and feasible. The results reveal that the selected replacement method with both a higher function coefficient and a lower economic coefficient can not only fulfil the performance requirements but also pursue a cost reduction, which leads to a considerable value increment. This system can effectively assist bridge managers in making appropriate operation and maintenance (O and M) decisions in actual engineering projects.https://www.mdpi.com/1996-1944/13/18/4177bridge expansion and contraction installation (BECI)replacement methodfunctional index evaluationlife-cycle value assessment (LCVA)analytic hierarchy process (AHP)decision system
collection DOAJ
language English
format Article
sources DOAJ
author Minshui Huang
Zian Xu
Liang Li
Yongzhi Lei
spellingShingle Minshui Huang
Zian Xu
Liang Li
Yongzhi Lei
Construction and Application of Bridge Expansion and Contraction Installation Replacement Decision System Based on the Analytic Hierarchy Process
Materials
bridge expansion and contraction installation (BECI)
replacement method
functional index evaluation
life-cycle value assessment (LCVA)
analytic hierarchy process (AHP)
decision system
author_facet Minshui Huang
Zian Xu
Liang Li
Yongzhi Lei
author_sort Minshui Huang
title Construction and Application of Bridge Expansion and Contraction Installation Replacement Decision System Based on the Analytic Hierarchy Process
title_short Construction and Application of Bridge Expansion and Contraction Installation Replacement Decision System Based on the Analytic Hierarchy Process
title_full Construction and Application of Bridge Expansion and Contraction Installation Replacement Decision System Based on the Analytic Hierarchy Process
title_fullStr Construction and Application of Bridge Expansion and Contraction Installation Replacement Decision System Based on the Analytic Hierarchy Process
title_full_unstemmed Construction and Application of Bridge Expansion and Contraction Installation Replacement Decision System Based on the Analytic Hierarchy Process
title_sort construction and application of bridge expansion and contraction installation replacement decision system based on the analytic hierarchy process
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2020-09-01
description Bridge expansion and contraction installation (BECI) has proved to be an indispensable component of bridge structures due to its stability, comfort, and durability benefits. At present, conventional replacement technologies for modular-type, comb plate-type, and seamless-type BECIs are widely applied worldwide. However, it is unfortunate that there remains no systematic research on quantitative assessment approaches for evaluating the overall technical status and selecting optimal replacement methods for existing BECIs. Therefore, considering the installation performance according to functional index evaluations and the economic cost based on life-cycle value assessment (LCVA), a standardized quantitative assessment approach is proposed for optimal replacement method selection in this article. Simultaneously, the other new quantitative assessment method is developed for evaluating the overall technical status of BECIs, which provides a basis for the necessity of replacement. A BECI replacement decision system is constructed, and a corresponding case study illustrates that the proposed system based on the analytic hierarchy process (AHP) in this article proves to be reasonable and feasible. The results reveal that the selected replacement method with both a higher function coefficient and a lower economic coefficient can not only fulfil the performance requirements but also pursue a cost reduction, which leads to a considerable value increment. This system can effectively assist bridge managers in making appropriate operation and maintenance (O and M) decisions in actual engineering projects.
topic bridge expansion and contraction installation (BECI)
replacement method
functional index evaluation
life-cycle value assessment (LCVA)
analytic hierarchy process (AHP)
decision system
url https://www.mdpi.com/1996-1944/13/18/4177
work_keys_str_mv AT minshuihuang constructionandapplicationofbridgeexpansionandcontractioninstallationreplacementdecisionsystembasedontheanalytichierarchyprocess
AT zianxu constructionandapplicationofbridgeexpansionandcontractioninstallationreplacementdecisionsystembasedontheanalytichierarchyprocess
AT liangli constructionandapplicationofbridgeexpansionandcontractioninstallationreplacementdecisionsystembasedontheanalytichierarchyprocess
AT yongzhilei constructionandapplicationofbridgeexpansionandcontractioninstallationreplacementdecisionsystembasedontheanalytichierarchyprocess
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