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Electrical resistivity tomography applied to the study of neotectonic structures, northwestern Precordillera Sur, Central Andes of Argentina

机译:电阻层析成像技术用于研究新构造构造,阿根廷西北安第斯山脉的西北Precordillera Sur

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摘要

The Precordillera, which is one of the main morphotectonic units along the Pampean flat-slab subduction segment of the Central Andes of Argentina, is characterized by its high neotectonic activity. Thus, the study of the Late-Cenozoic to Recent deformation along this zone directly contributes to the seismic hazard characterization of the region. The Paleozoic and Mesozoic geological history of the southern sector of the Precordillera (Precordillera Sur) resulted in an inhomogeneous basement whose mechanical anisotropies seem to control the Andean structural features. As the northwestern edge of the Precordillera Sur and its piedmont sector shows no Cenozoic rocks, it is not possible to use them as a tool to reconstruct the tectonic deformation of this age. However, the presence of a regional Pre-Cenozoic tilted erosion surface can be use as a structural marker. The Andean tectonic deformation is here represented by some scattered Cenozoic to Recent structural highs carved in Paleozoic rocks and Quaternary sediments and by drainage modifications within the Quaternary alluvial fans. The aim of this contribution is to present a geophysical study of two piedmont neotectonic structural features: the Yalguaraz structural high and a subtle drainage incision anomaly. We studied the shallow subsurface character of these structural features by means of electrical resistivity tomographies in order to evaluate the subsurface presence of the erosion surface, its structural fabric and its relationship with Late-Cenozoic to Recent tectonic structures. This methodology showed to be effective and useful in the study of such features. We interpreted the Yalguaraz fault as a subvertical NE-dipping reverse fault, related to a fault scarp retreat of about 50-70 m. Furthermore, its NW-trending could be associated with mechanical anisotropies, likely Paleozoic in age. According to analyses of aerial photographs, the oldest aggradation level of the study zone (Early-Middle Pleistocene) could be affected by the activity of the Yalguaraz fault. The youngest Quaternary deposits (Holocene) do not show surface as well as subsurface evidence of deformation. In the case of the studied Quaternary drainage incision anomaly, the performed electrical resistivity tomography corroborates the relationship between these elements and incipient tectonic deformation.
机译:Precordillera是阿根廷中部安第斯山脉Pampean平板俯冲带的主要构造构造单元之一,其新构造活动活跃。因此,对该地区晚新生代至最近的变形的研究直接有助于该地区的地震危险性表征。 Precordillera(Precordillera Sur)南部地区的古生代和中生代地质历史导致了一个不均匀的基底,其机械各向异性似乎控制着安第斯构造特征。由于Precordillera Sur的西北边缘及其山麓地带没有新生代岩石,因此不可能将其用作重建该时代构造变形的工具。然而,区域性的新生代倾斜的侵蚀表面的存在可以用作构造标志。在这里,安第斯构造变形以在古生代岩石和第四纪沉积物中雕刻的一些新生代到新近的构造高点以及第四纪冲积扇内的排水改造为代表。该贡献的目的是对两个山前新构造构造特征进行地球物理研究:Yalguaraz高构造和微妙的引流切口异常。我们通过电阻层析成像技术研究了这些结构特征的浅层次表层特征,以评估侵蚀表面的次表层存在,其构造构造及其与晚新生代至最近构造构造的关系。这种方法论在研究此类特征方面是有效的和有用的。我们将Yalguaraz断层解释为近垂直NE浸入的反向断层,与断层陡峭退缩约50-70 m有关。此外,其西北向趋势可能与机械各向异性有关,可能是年龄上的古生代。根据航拍照片的分析,Yalguaraz断层的活动可能会影响研究区最古老的凝集水平(早中更新世)。最年轻的第四纪沉积物(全新世)没有表层和地下变形迹象。在研究第四纪排水切口异常的情况下,进行的电阻率层析成像证实了这些元素与初期构造变形之间的关系。

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  • 来源
    《Journal of South American earth sciences》 |2012年第2012期|p.47-60|共14页
  • 作者单位

    Laboratorio de Neotectonica (LANEO), Institute) de Ceociencias Basicas, Aplicadas y Ambientales de Buenos Aires (IGEBA), Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Consejo National de Investigadones Cientificas y Tecnicas (CONICET), Argentina;

    Laboratorio de Paleomagnetismo Daniel A. Valencio, Instituto de Ceociencias Basicas, Aplicadas y Ambientales de Buenos Aires (ICEBA), Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Consejo Nacional de Investigadones Cientificas y Tecnicas (CONICET), Argentina;

    Laboratorio de Neotectonica (LANEO), Institute) de Ceociencias Basicas, Aplicadas y Ambientales de Buenos Aires (IGEBA), Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Consejo National de Investigadones Cientificas y Tecnicas (CONICET), Argentina;

    Laboratorio de Paleomagnetismo Daniel A. Valencio, Instituto de Ceociencias Basicas, Aplicadas y Ambientales de Buenos Aires (ICEBA), Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Consejo Nacional de Investigadones Cientificas y Tecnicas (CONICET), Argentina;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    electrical resistivity tomography; neotectonics; structural controls; precordillera; central andes of argentina;

    机译:电阻层析成像新构造结构控制;record阿根廷中部安第斯山脉;

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