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Development of an improved intensity measure in order to reduce the variability in seismic demands under near-fault ground motions

机译:开发一种改进的强度测量方法,以减少近断层地面运动下地震需求的变化

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摘要

Intensity measure (IM) which describes the strength of an earthquake record plays an important role in the seismic performance assessment of structures. An improved IM that can reduce the variability in seismic demands helps reducing the number of records necessary to predict the seismic performance with sufficient accuracy. In this study, an improved RMS-based IM is developed based on the results obtained from incremental dynamic analyses of short-to relatively long-period frames under an ensemble of near-fault pulse-like earthquake records. It is observed that the root-mean-square value of pseudo spectral accelerations, (S _a) _(rms), is generally superior to that of spectral velocities, (S _v) _(rms), in seismic demand prediction under near-fault records. To compute (S _a) _(rms) as IM, two appropriate period ranges are suggested for short- and moderated-to relatively long-period frames, respectively. Comparing the efficiency of (S _a) _(rms) with several advanced IMs shows that (S _a) _(rms) is more efficient in predicting the inelastic response and collapse capacity of short-period frames. It is also found that intensity measure (S a) _(rms) is sufficient with respect to the magnitude and source-to-site distance for all frames of various heights under near-fault ground motions.
机译:描述地震记录强度的强度度量(IM)在结构的抗震性能评估中起着重要作用。可以减少地震需求变化的改进的IM有助于减少以足够的精度预测地震性能所需的记录数量。在这项研究中,基于在近似断层脉冲状地震记录下对短到相对长周期框架进行增量动态分析的结果,开发了一种改进的基于RMS的IM。可以看出,在近地震下的地震需求预测中,伪谱加速度的均方根值(S _a)_(rms)通常要优于谱速度(S _v)_(rms)。故障记录。为了将(S _a)_(rms)计算为IM,建议分别针对短帧和中等周期到相对较长的帧建议两个合适的周期范围。将(S _a)_(rms)的效率与几个高级IM进行比较显示,(S _a)_(rms)在预测短周期框架的非弹性响应和崩溃能力方面更为有效。还发现,对于在近断层地面运动下各种高度的所有帧,强度度量(S a)_(rms)相对于幅度和源到站点的距离就足够了。

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