首页> 外文期刊>Journal of South American earth sciences >Basement-involved tectonism in the western Central Andes: Insights from the eastern Domeyko and Frontal cordilleras, and the Salar de Atacama Basin
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Basement-involved tectonism in the western Central Andes: Insights from the eastern Domeyko and Frontal cordilleras, and the Salar de Atacama Basin

机译:安第斯山脉中西部的基底构造作用:来自东部Domeyko和Frontal cordilleras以及Salar de Atacama盆地的见解

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摘要

? 2022 Elsevier LtdNorthern Chile is a natural laboratory to understand the relation between different basement-involved structural styles, mechanisms of basement uplift, and the interaction of Pre-Andean rift-related and Andean contractional structures. Field and geophysical data (two-dimensional seismic profiles) are key to understanding the geometry and kinematics of these structures in the subsurface. Herein, we analyzed the basement-involved tectonism in the easternmost part of the Domeyko Cordillera, the southern end of the Salar de Atacama Basin and the Frontal Cordillera in northern Chile based on an updated revision of the structures exposed on the surface and the other ones present in depth. Our results indicate that the Pre-Andean configuration of the region was the first-order factor controlling the basement-involved deformation. Late Permian to Jurassic rift-related, basement rooted, normal faults accommodated much of the shortening in the upper plate, thus triggering their partial and/or full reverse reactivation, situation that in some places was accompanied by purely reverse faulting, thus allowing the exhumation of large Paleozoic basement granitic blocks. This event occurred in a similar manner in the studied regions from Late Cretaceous to Paleocene in an arc-system geological context. The initial distribution of half-grabens, syn-rift and post-rift sequences governed the variations in the basement-involved structural styles ranging from basement-cored anticlines to tectonic wedges, among others. However, the flat-slab process has frequently been invoked as the main process responsible for the basement-involved tectonism in northern Chile. Our results suggest a strong control exerted by inherited stratigraphic and structural features more than variations in slab geometry.
机译:?2022 Elsevier Ltd智利北部是一个天然实验室,旨在了解不同基底参与结构风格、基底隆起机制以及前安第斯裂谷相关和安第斯收缩结构的相互作用之间的关系。现场和地球物理数据(二维地震剖面)是了解地下这些结构的几何形状和运动学的关键。在此,我们分析了多梅科科迪勒拉山脉最东端、阿塔卡马盐沼盆地南端和智利北部锋科迪勒拉山脉的基底构造作用,基于对暴露在地表的结构和深度存在的其他结构的最新修订。结果表明,该地区前安第斯构型是控制基底变形的一阶因子。晚二叠世至侏罗世与裂谷相关的基底根系正断层容纳了上板块的大部分缩短,从而触发了它们的部分和/或全部反向再激活,在某些地方伴随着纯粹的反向断层,从而允许挖掘大型古生代基底花岗岩块。在弧系地质背景下,从晚白垩世到古新世的研究区域,这一事件以类似的方式发生。半地堑、同裂谷和后裂谷序列的初始分布决定了基底构造风格的变化,从基底取芯背斜到构造楔形等。然而,平板过程经常被用作智利北部基底构造的主要过程。我们的研究结果表明,遗传的地层和结构特征比板几何形状的变化更能发挥强大的控制作用。

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  • 来源
    《Journal of South American earth sciences》 |2022年第11期|1-13|共13页
  • 作者

    Martinez F.; Pena M.; Lopez C.;

  • 作者单位

    Departamento de Ciencias Geológicas FICG Universidad Católica del Norte;

    Carrera de Geología Facultad de Ingeniería Universidad Andres Bello Campus República;

    Universidad Mayor Escuela de Geología;

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  • 正文语种 英语
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