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首页> 外文期刊>Journal of seismology >Ground motion characterization and seismic hazard assessment in Spain: context, problems and recent developments
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Ground motion characterization and seismic hazard assessment in Spain: context, problems and recent developments

机译:西班牙的地震动表征和地震灾害评估:背景,问题和最新发展

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This article points out some particular features conditioning seismic hazard assessments (SHA) in Spain, a region with low-moderate seismicity. Although sized earthquakes occurred in the past, as evidenced by historical documents and neotectonic studies, no large events occurred during the last decades. The absence of strong motion records corresponding to earthquakes with magnitude larger than 5.5 is an important obstacle for the development of ground motion models constrained by local data, with the consequent difficulty in SHA studies. In this paper, some recent developments aiming at providing solutions to these difficulties are presented. Specifically, a strong motion databank containing a massive collection of accelerograms and response spectra from different configurations source-path-site corresponding to earthquakes all over the world is introduced, together with software utilities for its management. A first application of this databank is the development of specific ground motion models for Spain and for the Mediterranean region that predict peak ground accelerations as a function of several definitions of magnitude, distance and soil class. The predictive power of these ground motion models is tested by contrasting their estimates with recently recorded ground motions. The comparison between our ground-motion models with others proposed in the literature for other areas reveals a regular overestimation of the expected ground motions at Spanish sites by the non-local models. Consequently, SHA studies based in external models may overestimate the predicted hazard at the Iberian sites. In the last part of the paper a method for checking whether the response spectra proposed in the Spanish Building Code (NCSE-02) are consistent with actual accelerometric data from recent low magnitude earthquakes is applied. The spectral shapes of the Spanish Building Code NCSE-02 are compared with the response spectral shapes deduced from the available accelerograms by normalising the response spectra with the recorded PGA. It is appreciated that the NCSE-02 spectral shapes are exceeded by a large number of actual spectral shapes for short periods (around 0.2 s), a result to be taken into account in further revisions of the NCSE-02 code. The issues tackled in this work constitute not only an improvement for ground-motion characterisation in Spain, but also provide guidelines of general interest for potential applications in other regions with similar seismicity.
机译:本文指出了地震活动程度较低的西班牙区域的地震灾害评估(SHA)条件。尽管历史上和新构造研究都证明了过去发生过大地震,但在过去的几十年中没有发生大的事件。缺少与5.5级以上地震对应的强运动记录,是发展受当地数据约束的地震动模型的重要障碍,因此在SHA研究中存在困难。在本文中,提出了一些旨在为这些难题提供解决方案的最新进展。具体来说,引入了一个强大的运动数据库,其中包含大量加速度图和响应光谱的集合,这些加速度图和响应光谱来自与世界各地地震相对应的不同配置的源-路径站点,以及用于管理它的软件实用程序。该数据库的第一个应用是为西班牙和地中海地区开发了特定的地面运动模型,这些模型预测了地面加速度的峰值,这是幅度,距离和土壤类别的几种定义的函数。通过将它们的估计值与最近记录的地面运动进行对比,测试了这些地面运动模型的预测能力。将我们的地面运动模型与文献中针对其他领域提出的其他模型进行比较后,发现非本地模型经常高估了西班牙站点的预期地面运动。因此,基于外部模型的SHA研究可能会高估伊比利亚站点的预计危害。在本文的最后一部分中,采用了一种方法来检查西班牙建筑法规(NCSE-02)中提出的响应谱是否与来自近期低强度地震的实际加速度数据一致。通过用记录的PGA对响应光谱进行归一化,将西班牙建筑法规NCSE-02的光谱形状与从可用加速度图推导出的响应光谱形状进行比较。可以理解的是,短时间内(约0.2 s),大量的实际光谱形状超出了NCSE-02光谱形状,这是在NCSE-02代码的进一步修订中要考虑的结果。这项工作所解决的问题不仅对西班牙的地震动特征进行了改进,而且还为地震相似的其他地区的潜在应用提供了普遍关注的指南。

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