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首页> 外文期刊>Bulletin of the Seismological Society of America >Nonstationary stochastic simulation of strong ground motion time histories including natural variability: Application to the K-net Japanese database
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Nonstationary stochastic simulation of strong ground motion time histories including natural variability: Application to the K-net Japanese database

机译:强大地面运动时间历史的非营养随机模拟,包括自然可变性:应用于K-NED日语数据库

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Physical models that can be used to obtain realistic accelerograms usually require a thorough knowledge of the source, path, and site effects. In addition, the computational resources needed might be expensive. Thus, empirical models still represent a good alternative for simulating strong ground motion. In this work, we modify and improve the model developed by Sabetta and Pugliese (1996). This new method models the time-domain accelerogram based on the assumption that the phase is random and that the time envelope can be represented by the so-called average instantaneous power. This is, in turn, described as a lognormal distribution for P and S waves combined with an algebro-exponential function representing the envelope of coda waves. In addition, the frequency content of the signal is nonstationary and follows a modified omega-square model. The method depends on four common indicators in earthquake engineering: peak ground acceleration, strong-motion duration, Arias intensity, and central frequency. These indicators are empirically connected to a given database by means of ground-motion prediction equations. In this study we calibrate the model using Japanese data recorded by the K-net array, which has high-quality digital accelerograms and station-site conditions characterized by geotechnical measurements. In addition, this technique permits the inclusion of the uncertainty of the model parameters to take into account the ground-motion natural variability in the stochastic generation of the time histories. The main goal of this work is to provide the earthquake engineering community with a flexible tool to generate realistic accelerograms for dynamic studies.
机译:可用于获得现实Accelerograms的物理模型通常需要彻底了解源,路径和站点效果。此外,所需的计算资源可能是昂贵的。因此,经验模型仍然代表了模拟强大的地面运动的良好替代方案。在这项工作中,我们修改和改进了Sabetta和Pugliese(1996)开发的模型。这种新方法基于该相位随机的假设来模拟时域Accelerogram,并且时间包络可以由所谓的平均瞬时功率表示。这反过来又被描述为P和S波的Lognormal分布,与代数 - 指数函数相结合,该代数函数表示Coda波的包络。另外,信号的频率内容是非间断的,并遵循修改的ω-Square模型。该方法取决于地震工程中的四个常见指标:峰接地加速,强运动持续时间,芳叠强度和中心频率。这些指示器通过地面运动预测方程经验与给定的数据库连接到给定的数据库。在这项研究中,我们使用由K-Net阵列记录的日本数据进行校准模型,该数据具有高质量的数字式加速器和基站现场条件,其特征在于岩土测量。此外,该技术允许包含模型参数的不确定性,以考虑时间历史的随机生成的地面运动自然变性。这项工作的主要目的是提供地震工程界,具有灵活的工具来为动态研究产生现实的加速局。

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