3층 전단벽 구조물의 지진응답에 관한 수치해석Numerical Study on Seismic Behavior of a Three-Story RC Shear Wall Structure

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A shear wall is a structural member designed to effectively resist in-plane lateral forces, such as strong winds and earthquakes. Due to its efficiency and stability, shear walls are often installed in residential buildings and essential facilities such as nuclear power plants. In this research, to predict the results of the shaking table test of the three-story shear wall RC structure hosted by the Korea Atomic Energy Research Institute, three types of numerical modeling techniques are proposed: Preliminary, Calibrated 1, and Calibrated 2 models, in order of improvement. For the proposed models, an earthquake of the 2016 Gyeongju, South Korea (peak ground acceleration of 0.28 g) and its amplified earthquake (peak ground acceleration of 0.50 g) are input. The response spectra of the measuring points are obtained by numerical analysis. Good agreement is observed in the comparisons between the experiment results and the simulation conducted on the finally adopted numerical model, Calibrated 2. In the process of improving the model, this paper investigates the influences of the mode shape, material properties, and boundary conditions on the structure's seismic behavior.
Publisher
한국지진공학회
Issue Date
2021-05
Language
Korean
Citation

한국지진공학회논문집, v.25, no.3, pp.111 - 119

ISSN
1226-525X
DOI
10.5000/eesk.2021.25.3.111
URI
http://hdl.handle.net/10203/290001
Appears in Collection
CE-Journal Papers(저널논문)
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