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Inelastic behavior and ductility capacity of reinforced concrete bridge piers under earthquake. I: Numerical validation

Authors
Kim, THLee, KMYoon, CShin, HM
Issue Date
Sep-2003
Publisher
ASCE-AMER SOC CIVIL ENGINEERS
Keywords
inelastic action; ductility; concrete, reinforced; bridges, piers; earthquakes; validation; simulation; finite element method
Citation
JOURNAL OF STRUCTURAL ENGINEERING, v.129, no.9, pp.1208 - 1219
Journal Title
JOURNAL OF STRUCTURAL ENGINEERING
Volume
129
Number
9
Start Page
1208
End Page
1219
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/25936
DOI
10.1061/(ASCE)0733-9445(2003)129:9(1208)
ISSN
0733-9445
Abstract
Analytical models for the inelastic behavior and ductility capacity of reinforced concrete bridge piers under earthquake are presented in Part I of this two-part paper. Part II presents experimental verification and results from numerical simulations. A general purpose finite element analysis program implementing the reinforced concrete plane stress element and the interface element is developed. Nonlinear analysis results for various reinforced concrete bridge piers subjected to given seismic loading show reasonable agreement with the recorded experimental data, and this validates that the models may be appropriately used as constitutive models for inelastic analyses of reinforced concrete bridge piers under earthquake. The displacement ductility capacity is computed for the members, and a seismic design method for reinforced concrete bridge piers considering the response modification factor is discussed.
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