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Site effects in Mexico City basin: Past and present

机译:墨西哥城盆地的网站效果:过去和现在

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Due to the unique subsoil conditions prevailing in the Mexico City basin, seismic risk has been strongly correlated to site effects. Thus, during the Mw 8.1 09/19/1985 subduction fault earthquake, and its strong aftershock Mw 7.5 09/21/1985, extensive damage was observed in the area, along with the loss of thousands of lives, despite these events had an epicentral distance of around 430 km from Mexico City. The observed damage was mostly due to site affects originated by the high plastiCity clay deposits found in the basin, which lead to large amplifications, and duration elongation of the ground motions coming from the epicenter. In addition, a frequency content modification occurs, which in turn, leads to a double resonance effect between the incoming ground motions, soil deposits, and the damaged buildings. Exactly 32 years after this devastating event, the Mw 7.1 09/19/2017 normal fault earthquake, reminded us of the importance of accounting for site effects, and most importantly the need to carry out a proper characterization of basin geometry, soil profile configuration, hydraulic conditions, and maintenance-structure periodic assessments of the building stock in Mexico City. This is required to reduce uncertainties of seismic vulnerability studies for extreme-event seismic hazard scenarios. In this paper, the role of site response and seismic soil-structure interaction as key factors responsible of the observed damage in the City is revisited, through series of 3D finite difference models of typical structure-foundation-soil typologies found at the areas where most of the damage was observed, highlighting its clear impact in the final damage distribution observed around the City.
机译:由于墨西哥城盆地盛行的独特潜水条件,地震风险与现场效应强烈相关。因此,在MW 8.1 09/19/19/19/19/19/19/19/19/1985悬崖地震期间,其强大的余震MW 7.5 09/21/1985,在该地区观察到广泛的损害,尽管这些事件有震中,但仍然存在成千上万的生活距离墨西哥城约430公里。所观察到的损害主要是由于盆中发现的高可塑性粘土沉积物的部位影响,这导致来自震中的较大的扩增和持续时间伸长率。另外,发生频率内容修改,其又导致入口地运动,土壤沉积物和损坏的建筑物之间的双共振效应。在这一破坏性事件发生后,MW 7.1 09/19/2017正常故障地震,提醒我们对现场效果的重要性,最重要的是需要进行盆地几何形状,土壤轮廓配置的适当表征,墨西哥城建筑股的水力条件和维护结构定期评估。这是需要减少极端情况地震危害情景的地震脆弱性研究的不确定性。在本文中,检测了现场反应和地震土壤 - 结构互动作为关键因素的重新审视,通过典型结构基础土壤类型的一系列3D有限差异模型进行了重新审视,在最多的地方观察到损害,突出了它在城市周围观察到的最终损害分布的明显影响。

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