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The September 19, 2017 Mw 7.1 Puebla-Mexico City earthquake: Observed rockfall and landslide activity

机译:2017年9月19日MW 7.1普埃布拉 - 墨西哥城地震:观察到岩石和滑坡活动

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This note documents key observations of slope instability and rockfall activity made by the UNAM-GEER reconnaissance team after the Mw 7.1 Puebla-Mexico City earthquake of September 19, 2017. The investigated sites were located in Mexico City and the states of Morelos, Puebla and Mexico. Sites were studied using a combination of ground surveys, UAV imagery, and terrestrial LiDAR imaging. The field reconnaissance efforts were supplemented by analysis of pre- and post-event satellite images to define the boundary of the region affected by earthquake-induced landslides. Most slope failures occurred in remote areas or areas that had a prior history of instability. Overall, the consequences of slope instabilities caused by the 2017 Puebla-Mexico City earthquake were relatively minor compared with the reported structural damage. More than 360 deaths were attributed to this earthquake of which one death was attributed to landslide activities. The size of the area affected by landslides and the intensity of shaking in these areas was consistent with relationships developed in previous studies. The lack of major effects from earthquake-induced landslides is consistent with previous earthquakes in central and southern Mexico and stands in sharp contrast to many parts of Central America where earthquake-induced landslides pose a significant hazard.
机译:本说明文件在2017年9月19日星期六,临时侦察队队伍后的坡度不稳定性和岩石活动的关键观察。调查的地点位于墨西哥城和莫雷洛斯,普埃洛斯(Morelos)和普韦布拉的州墨西哥。使用地面调查,UAV图像和地面激光雷达成像的组合研究了网站。通过对前事件后卫星图像的分析来补充现场侦察努力,以确定受地震诱导的滑坡影响的区域的边界。大多数斜坡故障发生在偏远地区或有不稳定性历史记录的区域中。总体而言,与报告的结构损伤相比,2017年普埃布拉 - 墨西哥城地震造成的坡度不稳定性的后果相对较小。超过360人死亡归因于这种地震,其中一个死亡归因于滑坡活动。受山体滑坡影响的面积的大小和这些地区的摇动强度与先前研究中发育的关系一致。地震诱导的山体滑坡缺乏主要影响与墨西哥中部和南部的以前的地震一致,与中美地震诱导的滑坡造成严重危险的众多突出地位呈现鲜明对比。

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