Seismic Resilience Evaluation of Double-Pier Bridge Substructures With Delay Time Consideration

Traditional bridges rely on ductile seismic design and hysteretic energy dissipation, followed by repairs to restore service. Double-pier bridge substructures are statically indeterminate; under transverse excitation, pier stresses hinder selecting damage indices, limiting seismic resilience evaluation. This study investigates a double-pier bridge using a Copula function to quantify correlations and incorporate them into vulnerability analysis and seismic resilience assessment. Functional loss and repair time are calculated from correlated vulnerabilities under three functional recovery functions. Assuming repair time is proportional to delay time, exponential- and trigonometric-based resilience methods yield a specific resilience value for identifying damage states and comparing recovery functions.

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Publication Details

Journal
Journal of Earthquake Engineering
Published
2026-09-19
DOI
https://doi.org/10.1080/13632469.2026.2734099
Primary Topic
Seismic Performance and Analysis
Type
article
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article

Seismic Resilience Evaluation of Double-Pier Bridge Substructures With Delay Time Consideration

Konstantinos Daniel Tsavdaridis, Shaomin Jia, Haijun Wang, Bowen Yang et al.
Journal of Earthquake Engineering
Seismic Performance and Analysis
article

Seismic Resilience Evaluation of Double-Pier Bridge Substructures With Delay Time Consideration

Konstantinos Daniel Tsavdaridis, Shaomin Jia, Haijun Wang, Bowen Yang, Zhaolan Wei
article en

Abstract

Traditional bridges rely on ductile seismic design and hysteretic energy dissipation, followed by repairs to restore service. Double-pier bridge substructures are statically indeterminate; under transverse excitation, pier stresses hinder selecting damage indices, limiting seismic resilience evaluation. This study investigates a double-pier bridge using a Copula function to quantify correlations and incorporate them into vulnerability analysis and seismic resilience assessment. Functional loss and repair time are calculated from correlated vulnerabilities under three functional recovery functions. Assuming repair time is proportional to delay time, exponential- and trigonometric-based resilience methods yield a specific resilience value for identifying damage states and comparing recovery functions.

Journal of Earthquake Engineering
China Three Gorges Corporation (China) (CN), Sichuan Agricultural University (CN), Universidad de Londres (MX)
Affordable and clean energy
Openalex Percentile: Top 17%
Seismic Performance and Analysis
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Seismic Resilience Evaluation of Double-Pier Bridge Substructures With Delay Time Consideration — Konstantinos Daniel Tsavdaridis, Shaomin Jia, et al. · Journal of Earthquake Engineering (2026) | TGRS Research Map | TGRS