Seismic Risk Analysis of Offshore Bridges Considering Seismic Correlation between Vulnerable Components

To comprehensively evaluate the seismic performance of offshore bridges, a seismic risk analysis of an example bridge was developed based on improved two-dimensional (2D) seismic fragility analysis. Taking a simply-supported beam bridge in an offshore tidal environment as an example, the adverse eff...

Full description

Bibliographic Details
Main Authors: Wenjing Ren, Aijun Liu, Dapeng Qiu
Format: Article
Language:English
Published: MDPI AG 2023-05-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/13/11/6485
_version_ 1797597924016783360
author Wenjing Ren
Aijun Liu
Dapeng Qiu
author_facet Wenjing Ren
Aijun Liu
Dapeng Qiu
author_sort Wenjing Ren
collection DOAJ
description To comprehensively evaluate the seismic performance of offshore bridges, a seismic risk analysis of an example bridge was developed based on improved two-dimensional (2D) seismic fragility analysis. Taking a simply-supported beam bridge in an offshore tidal environment as an example, the adverse effects of chloride ion erosion are considered and the seismic response process of the example bridge is simulated using the Incremental Dynamic Analysis (IDA) method. The appropriate damage indexes are chosen for the plate rubber bearing and the pier, and the one-dimensional (1D) seismic fragility curves of single components and the entire bridge are obtained. The correlation coefficients of vulnerable components are quantitatively proposed based on the correlation analysis method, and the 2D seismic fragility curves of the entire bridge are achieved while accounting for seismic correlation between vulnerable components. The seismic risk probability of the entire bridge is finally determined after combining hazard analysis at the bridge site and seismic loss analysis. The results show that there is a significant correlation between vulnerable components and that 2D seismic fragility analysis based on the reliable correlation coefficients of vulnerable components can more comprehensively evaluate the seismic performance of the entire bridge. In the context of seismic disaster reduction research focused on slight and moderate damage caused by moderate-to-small ground motions, this research can provide scientific and technical support for seismic design and seismic risk assessment of offshore bridges.
first_indexed 2024-03-11T03:11:08Z
format Article
id doaj.art-0a8e8c9a68b7477c92043db28797ef4a
institution Directory Open Access Journal
issn 2076-3417
language English
last_indexed 2024-03-11T03:11:08Z
publishDate 2023-05-01
publisher MDPI AG
record_format Article
series Applied Sciences
spelling doaj.art-0a8e8c9a68b7477c92043db28797ef4a2023-11-18T07:32:45ZengMDPI AGApplied Sciences2076-34172023-05-011311648510.3390/app13116485Seismic Risk Analysis of Offshore Bridges Considering Seismic Correlation between Vulnerable ComponentsWenjing Ren0Aijun Liu1Dapeng Qiu2Equipment Infrastructure Division, Jinan Vocational College, Jinan 250110, ChinaEquipment Infrastructure Division, Jinan Vocational College, Jinan 250110, ChinaSchool of Civil Engineering, Shandong Jianzhu University, Jinan 250110, ChinaTo comprehensively evaluate the seismic performance of offshore bridges, a seismic risk analysis of an example bridge was developed based on improved two-dimensional (2D) seismic fragility analysis. Taking a simply-supported beam bridge in an offshore tidal environment as an example, the adverse effects of chloride ion erosion are considered and the seismic response process of the example bridge is simulated using the Incremental Dynamic Analysis (IDA) method. The appropriate damage indexes are chosen for the plate rubber bearing and the pier, and the one-dimensional (1D) seismic fragility curves of single components and the entire bridge are obtained. The correlation coefficients of vulnerable components are quantitatively proposed based on the correlation analysis method, and the 2D seismic fragility curves of the entire bridge are achieved while accounting for seismic correlation between vulnerable components. The seismic risk probability of the entire bridge is finally determined after combining hazard analysis at the bridge site and seismic loss analysis. The results show that there is a significant correlation between vulnerable components and that 2D seismic fragility analysis based on the reliable correlation coefficients of vulnerable components can more comprehensively evaluate the seismic performance of the entire bridge. In the context of seismic disaster reduction research focused on slight and moderate damage caused by moderate-to-small ground motions, this research can provide scientific and technical support for seismic design and seismic risk assessment of offshore bridges.https://www.mdpi.com/2076-3417/13/11/6485offshore bridgeschloride ion erosionseismic correlation between vulnerable components2D seismic fragility analysisseismic risk analysis
spellingShingle Wenjing Ren
Aijun Liu
Dapeng Qiu
Seismic Risk Analysis of Offshore Bridges Considering Seismic Correlation between Vulnerable Components
Applied Sciences
offshore bridges
chloride ion erosion
seismic correlation between vulnerable components
2D seismic fragility analysis
seismic risk analysis
title Seismic Risk Analysis of Offshore Bridges Considering Seismic Correlation between Vulnerable Components
title_full Seismic Risk Analysis of Offshore Bridges Considering Seismic Correlation between Vulnerable Components
title_fullStr Seismic Risk Analysis of Offshore Bridges Considering Seismic Correlation between Vulnerable Components
title_full_unstemmed Seismic Risk Analysis of Offshore Bridges Considering Seismic Correlation between Vulnerable Components
title_short Seismic Risk Analysis of Offshore Bridges Considering Seismic Correlation between Vulnerable Components
title_sort seismic risk analysis of offshore bridges considering seismic correlation between vulnerable components
topic offshore bridges
chloride ion erosion
seismic correlation between vulnerable components
2D seismic fragility analysis
seismic risk analysis
url https://www.mdpi.com/2076-3417/13/11/6485
work_keys_str_mv AT wenjingren seismicriskanalysisofoffshorebridgesconsideringseismiccorrelationbetweenvulnerablecomponents
AT aijunliu seismicriskanalysisofoffshorebridgesconsideringseismiccorrelationbetweenvulnerablecomponents
AT dapengqiu seismicriskanalysisofoffshorebridgesconsideringseismiccorrelationbetweenvulnerablecomponents