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Ductility demands for stiffness-degrading SDOF systems under pulse-like ground motions of the 2023 Pazarcık (Kahramanmaraş) earthquake

机译:2023年帕扎尔奇克(卡赫拉曼马拉什)地震脉冲类地震动下刚度退化SDOF系统的延性要求

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Abstract This paper investigates the inelastic displacement ratios (IDRs) and displacement ductility demands of a wide range of single-degree-of-freedom (SDOF) systems subjected to pulse-like ground motions (GMs) of the 2023 Pazarcık (Kahramanmaraş) earthquake. A set of twenty-seven GMs characterized as pulse-like are utilized in the study. As-recorded velocity time histories of horizontal components are rotated over 90° at a step of 1° to attain the waveform with the largest peak ground velocity (PGV) over all horizontal orientations. Inelastic displacement ratio and displacement ductility spectra are computed through nonlinear response history analysis (RHA). Local amplifications of both spectra are observed at some periods. The results of this study show that large inelastic displacement and ductility demands are imposed on certain reinforced concrete (RC) structures. Finally, predictive models of the mean inelastic displacement ratio and mean ductility demand spectra (DDS) are developed based on the Gauss–Newton algorithm (GNA). The model provides a strong correlation between the computed and the estimated data, and sufficient convergence criteria. The results of this study collectively emphasize the necessity of integrating pulse-like GMs into future revisions of earthquake codes.
机译:摘要 研究了2023年帕扎曼马拉什(Kahramanmaraş)地震脉冲类地震(GMs)作用下大范围单自由度(SDOF)系统的非弹性位移比(IDRs)和位移延性要求。该研究中使用了一组 27 个表征为脉冲样的 GM。记录的速度时间历史:水平分量以 1° 的步长旋转 90°,以获得在所有水平方向上具有最大峰值地面速度 (PGV) 的波形。非弹性位移比和位移延性谱通过非线性响应历史分析(RHA)计算。在某些时期可以观察到两种光谱的局部放大。研究结果表明,某些钢筋混凝土(RC)结构对非弹性位移和延性提出了较大的要求。最后,基于高斯-牛顿算法(GNA)建立了平均非弹性位移比和平均延性需求谱(DDS)预测模型。该模型在计算数据和估计数据之间提供了很强的相关性,并提供了足够的收敛标准。这项研究的结果共同强调了将脉冲类GMs纳入未来地震规范修订的必要性。

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