首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Analysis of neotectonic structures in the Eastern Precordillera of Argentina in relation to seismic hazard by the application of integrated geophysical methods
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Analysis of neotectonic structures in the Eastern Precordillera of Argentina in relation to seismic hazard by the application of integrated geophysical methods

机译:综合地球物理方法应用综合危害与地震危害与地震危害相关的射出危害

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摘要

The city of San Juan, in the Central-Western region of Argentina, has been the target of very destructive superficial earthquakes, some of which have not been associated to a clear structural source up to this date. The city is constantly growing outside the valley where it is located, towards the area of Eastern Precordillera which is currently having an increased socio-cultural activity. Thus, this study is focused on increasing the geological knowledge of the latter by studying the eastern flank of Sierra Chica de Zonda (Eastern Precordillera) whose proved neotectonic activity represents a geohazard. On the basis of the general geological setting the neotectonic structures in the study area are related to a major active synclinal folding located just under the western sector of the San Juan city. Geophysical potential methods (gravimetric and magnetometric surveys) were used to recognize contacts by contrast of density and magnetic susceptibility. In order to reduce the ambiguity of these methods the gravi-magnetometric results were constrained by using seismic and electrical tomographies. These contacts where geophysical properties abruptly change, were interpreted as faults despite many of them not having a superficial expression. The latter being of great importance to asses the seismic hazard of the study area.
机译:圣胡安市在阿根廷中西部地区,一直是非常有破坏性的肤浅地震的目标,其中一些没有与明确的结构源相关联的这一日期。这座城市在山谷之外不断发展,朝向东部Predordillera的地区,目前正在增加社会文化活动。因此,本研究专注于通过研究塞拉奇卡德Zonda(东部Precordillera)的东部侧翼来提高后者的地质知识,其被证明的新推荐活动代表着地质曲目。在基于一般地质环境的基础上,研究区域的新统计学结构与位于圣胡安市西部的主要活性赤型折叠有关。地球物理潜在方法(重量测量和磁力测量)用于通过密度和磁化率对比识别触点。为了降低这些方法的模糊性,通过使用地震和电压凝视来限制重量磁磁性结果。这些接触突然变化的地球物理性质被解释为缺陷,尽管它们中的许多不具有表面表达。后者非常重视判断研究区域的地震危害。

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