日本原子力学会和文論文誌
Online ISSN : 2186-2931
Print ISSN : 1347-2879
ISSN-L : 1347-2879
論文
鉄筋コンクリート耐震壁に対する等価線形解析の適用性検討:原子炉建屋耐震壁終局応答試験の三次元有限要素法シミュレーション解析
市原 義孝中村 尚弘森谷 寛堀口 朋裕崔 炳賢
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2022 年 21 巻 1 号 p. 1-14

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In this study, we aim to approximately evaluate the effect of nonlinearity of reinforced concrete structures through seismic response analysis using the equivalent linear analysis method. A simulation analysis was performed for the ultimate response test of the shear wall of the reactor building used in an international competition by OECD/NEA in 1996. The equivalent stiffness and damping of the shear wall were obtained from the trilinear skeleton curves proposed by the Japan Electric Association and the hysteresis curves proposed by Cheng et al. The dominant frequency, maximum acceleration response, maximum displacement response, inertia force-displacement relationship, and acceleration response spectra of the top slab could be simulated well up to a shear strain of approximately γ=2.0×10-3. The equivalent linear analysis used herein underestimates the maximum displacement response at the time of ultimate fracture of approximately γ=4.0×10-3. Moreover, the maximum shear strain of the shear wall could not capture the locally occurring shear strain compared with that of the nonlinear analysis. Therefore, when employing this method to evaluate the maximum shear strain and test results, including those during the sudden increase in displacement immediately before the fracture, sufficient attention must be paid to its applicability.

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