Ground motion prediction model for southeastern México removing site effects using the Earthquake horizontal-to-vertical ratio (EHVSR)

IF 0.5 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS
J. Lermo-Samaniego
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引用次数: 0

Abstract

We propose a ground motion attenuation model (ground motion prediction equation, GMPE) for Southeast Mexico. We suppress site effects obtained from Earthquake Horizontal to Vertical Spectral Ratio (EHVSR) as a reliable estimate of site effects. (The attenuation model was built as a function of magnitude and hypocentral distance)). We used 86 seismic events with 5.0 ? Mw ? 8.2 (earthquake recordings for the 9/7/2017, Mw8.2 Tehuantepec earthquake are included), and distances between 52 ? R ? 618 km. They were recorded in nine stations of the Engineering Institute of the National Autonomous University of Mexico (II-UNAM) accelerometric network installed in the states of Chiapas, Oaxaca, Tabasco and Veracruz. Site effects at each of these stations were estimated by using the average EHVSR. Then, by means of this spectral ratio the site effects were suppressed at each station and for every record. This work points out the need to remove the site effect in the GMPE. The current models overestimate this effect.
利用地震水平垂直比(EHVSR)去除场地影响的msamxico东南部地震动预测模型
本文提出了墨西哥东南部地震动衰减模型(地震动预测方程,GMPE)。我们抑制了从地震水平与垂直谱比(EHVSR)中获得的场地效应,作为场地效应的可靠估计。(以震级和震源距离为函数建立衰减模型)。我们使用了86次5.0 ?Mw吗?8.2(包括2017年7月9日的地震记录,Mw8.2特万特佩克地震),52 ?R ?618公里。墨西哥国立自治大学工程研究所(II-UNAM)在恰帕斯州、瓦哈卡州、塔巴斯科州和韦拉克鲁斯州安装的加速度测量网络的9个站点记录了这些数据。利用平均EHVSR估计每个站点的场址效应。然后,利用该谱比抑制每个站点和每个记录的站点效应。本文指出了消除GMPE中场地效应的必要性。目前的模型高估了这种影响。
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来源期刊
Geofisica Internacional
Geofisica Internacional 地学-地球化学与地球物理
CiteScore
1.00
自引率
0.00%
发文量
23
审稿时长
>12 weeks
期刊介绍: Geofísica internacional is a quarterly scientific journal that publishes original papers that contain topics that are interesting for the geophysical community. The journal publishes research and review articles, brief notes and reviews books about seismology, volcanology, spacial sciences, hydrology and exploration, paleomagnetism and tectonic, and physical oceanography.
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