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An evolutionary stochastic ground-motion model defined by a seismological scenario and local site conditions

机译:由地震情景和当地情况定义的演化随机地震动模型

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This paper is concerned with modeling earthquake-induced ground accelerations and the simulation of the dynamic response of linear structures through the principles of stochastic dynamics. A fully evolutionary approach, with nonstationarity both in amplitude and in frequency content, is proposed in order to define the seismic action, based on seismological information in the form of a small number of input parameters commonly available in deterministic or probabilistic seismic design situations. The signal is obtained by filtering a Gaussian white-noise. The finite duration and time-varying amplitude properties are obtained by using a suitable envelope function. By utilizing a subset of the records from the PEER-NGA strong-motion database, and time-series analysis tools extended to nonstationary processes, the key transfer-function properties, in terms of circular frequency, damping ratio and spectral intensity factor, are identified. A regression analysis is conducted for practical and flexible application of this model, in order to empirically relate the identified time-varying parameters of the filter to the characteristics defining earthquake scenarios such as magnitude, rupture distance and soil type. A validation study and a parametric investigation using elastic response spectra is also included. Results show that the final seismic model can reproduce, with satisfactory accuracy, the characteristics of acceleration records in a region, over a broad range of response periods.
机译:本文涉及通过随机动力学原理对地震引起的地面加速度进行建模以及对线性结构的动力响应进行仿真。为了确定地震作用,提出了一种完全进化的方法,该方法在振幅和频率上都具有非平稳性,以地震信息为基础,以确定性或概率性地震设计情况下通常可用的少量输入参数的形式。通过过滤高斯白噪声获得信号。通过使用适当的包络函数可以获得有限的持续时间和随时间变化的振幅属性。通过利用PEER-NGA强运动数据库中记录的子集,以及扩展到非平稳过程的时间序列分析工具,可以识别出关键的传递函数特性,包括圆频率,阻尼比和频谱强度因子。为了对该模型的实际和灵活应用进行回归分析,以便根据经验将过滤器的已识别时变参数与定义地震场景的特征(例如震级,破裂距离和土壤类型)相关联。还包括使用弹性响应谱的验证研究和参数研究。结果表明,最终的地震模型可以在较宽的响应周期范围内以令人满意的精度再现区域中加速度记录的特征。

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  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2011年第11期|p.1465-1479|共15页
  • 作者单位

    The International Telematic University UNINETTUNO Engineering Faculty—Corso Vittorio Emanuele II 3900186 Rome. Italy;

    Department of Civil & Environmental Engineering Imperial College London. London SW7 2AZ UK;

    Department of Environmental Engineering and Sustainable Development Technical University ofBari viale del Turismo W 74100 Toronto Italy;

    Department of Electrics and Electronics Technical University of Bari Technical University of Bari via Orabona 4 70125 Ban Italy;

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