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Seismic microzoning of Arica and Iquique, Chile

机译:智利阿里卡和伊基克的地震微区

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This paper focuses on a geophysical-based analysis of the soils in Arica and Iquique, both main cities in northern Chile. The large seismogenic coupling and the 136-year seismic gap predispose the north of the country to the highly likely seismic activity that could affect this area. This seismotectonic scenario highlights the importance of the assessment of earthquake hazards in urban domains. In this context, seismic microzoning emerges as a tool to identify areas that are more or less susceptible to ground motion amplification. In both cities, 148 sites were chosen to perform geophysical surveys based on surface wave methods, namely the spatial autocorrelation, frequency-wave number and H/V spectral ratio techniques. By inverting the measurements, local shear wave velocity profiles and predominant frequencies were derived. Additionally, seven boreholes were drilled to further complement the gathered data. With the available results, the cities were subdivided into different zones with similar properties in terms of the average shear wave velocity on the upper 30 m () and the predominant site's frequency ; these were parameters that were found consistent with the geology of each city. The collected information suggests zones that are more prone to ground motion amplification, namely: the northern side of Arica, the south-east area of Iquique, the northern limit of Iquique and the artificial landfill of the port of Iquique. The microzoning was compared to the ground motion records of the April 1, 2014, Iquique earthquake and showed to be consistent with the expected motion amplification in Iquique.
机译:本文着重于对智利北部两个主要城市Arica和Iquique的土壤进行基于地球物理的分析。巨大的地震耦合和136年的地震间隔使该国北部容易发生可能影响该地区的地震活动。这种地震构造场景突显了评估城市地区地震灾害的重要性。在这种情况下,地震微区划成为一种工具,可用来识别或多或少容易受到地震动放大影响的区域。在这两个城市中,选择了148个站点以基于表面波方法(即空间自相关,频率-波数和H / V谱比技术)进行地球物理调查。通过反转测量,得出局部剪切波速度分布图和主要频率。此外,还钻了七个钻孔,以进一步完善所收集的数据。根据可获得的结果,根据上部30 m()上的平均剪切波速度和主要站点的频率,将城市划分为具有相似属性的不同区域;这些参数与每个城市的地质条件一致。收集到的信息显示了更容易发生地震动放大的区域,即:阿里卡的北侧,伊基克的东南地区,伊基克的北界和伊基克港的人工垃圾场。将微区带与2014年4月1日伊基克地震的地面运动记录进行了比较,结果表明该区域与预期的伊基克运动放大率一致。

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