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Accurate and Efficient Simulation of Cyclic Behavior of Diagonally Reinforced Concrete Coupling Beams

Authors
Han, Sang WhanKoh, HyeyoungLee, Chang Seok
Issue Date
Feb-2019
Publisher
EARTHQUAKE ENGINEERING RESEARCH INST
Citation
Earthquake Spectra, v.35, no.1, pp.361 - 381
Indexed
SCIE
SCOPUS
Journal Title
Earthquake Spectra
Volume
35
Number
1
Start Page
361
End Page
381
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/148357
DOI
10.1193/060717EQS108M
ISSN
8755-2930
Abstract
Diagonally reinforced concrete coupling beams (DRCB) play an important role in coupled shear wall systems since these members dissipate most seismic input energy during earthquakes. For reliable seismic performance evaluation using nonlinear response history analyses, it is important to use an accurate analytical model for DRCBs. In this study, the Pinching4 model is used as a base model to simulate the cyclic behavior of DRCBs. To simulate the cyclic behavior of DRCBs using the Pinching4 model, the constituent modeling parameters for backbone curve, pinching, and cyclic deterioration in strength and stiffness should be computed. To determine the proper values of the constituent modeling parameters accurately and efficiently, this study proposes empirical equations for the modeling parameters using forward stepwise regression analyses. This study shows that the cyclic behavior of DRCBs is accurately simulated using the Pinching4 model with constituent parameters calculated from the proposed empirical equations.
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COLLEGE OF ENGINEERING (SCHOOL OF ARCHITECTURAL ENGINEERING)
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