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Constant ductility inelastic displacement ratios for the design of self-centering structures with flag-shaped model subjected to pulse-type ground motions

机译:恒定型延性非弹性位移比用于脉冲型地震动下带有旗形模型的自定心结构的设计

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摘要

Previous studies on the inelastic displacement ratio mainly focused on the structures with conventional hysteretic models. For the self-centering structure, a flag-shaped (FS) hysteretic behavior normally can be obtained. The research on the inelastic displacement ratio of this type of structure is however limited. The main purpose of this study is to investigate the inelastic displacement ratio of the self-centering structure with FS hysteretic model subjected to near-fault pulse-type ground motions for the seismic design of structures. The inelastic displacement ratio for the FS model (C-mu,C-FS) is calculated based on the nonlinear dynamic analysis of single degree of freedom (SDOF) systems subjected to 100 near-fault pulse-type ground motions. For comparison, the C-mu,C-FS spectra for far-fault ground motions are also calculated and discussed. The comparison results show that pulse-type ground motions lead to much larger C-mu,C-FS compared to far-fault ground motions, particularly for the acceleration-sensitive spectral region of near-fault pulse-type ground motions. Extensive statistical studies are further carried out to examine the influences of structural and pulse-type ground motion characteristics on the C-mu,C-FS spectra. Finally, a simplified equation is developed to estimate the inelastic displacement ratio for the design of self-centering structures under pulse-type ground motions.
机译:以前关于非弹性位移比的研究主要集中在具有常规滞后模型的结构上。对于自定心结构,通常可以获得旗形(FS)的滞后行为。但是,这种结构的非弹性位移比的研究受到限制。这项研究的主要目的是利用FS滞后模型研究近断层脉冲型地震动下自定心结构的非弹性位移比,以进行结构的抗震设计。 FS模型(C-mu,C-FS)的非弹性位移比是基于单自由度(SDOF)系统在100次近断层脉冲式地震动下的非线性动力学分析得出的。为了进行比较,还计算并讨论了远断层地面运动的C-mu,C-FS谱。比较结果表明,与远断层地面运动相比,脉冲型地面运动导致更大的C-mu,C-FS,特别是对于近断层脉冲型地面运动的加速度敏感频谱区域。进一步进行了广泛的统计研究,以检查结构和脉冲型地震动特征对C-mu,C-FS谱的影响。最后,开发了一个简化的方程式来估计在脉冲型地震动下设计自定心结构的非弹性位移比。

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