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The Cerro Guanaco mass movements: A geophysical and morphometric approach on a megalandslide in the Fuegian Andes (Southern Patagonia)

机译:Cerro Guanaco大规模运动:Fuegian Andes(南巴拉哥尼亚)的梅格拉德拉德地球物理和形态学方法

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摘要

The Fuegian Andes, in the southernmost part of South America, are characterized by a relatively young deglacial landscape, where the glacial erosive relief is strongly influenced by regional-scale geological structures, resulting in deep longitudinal valleys with steeply dipping hillslopes. The rock-slope stability response to receding ice masses and the contribution of the gravitational processes in landscape evolution of the southernmost Andes, however, have not been assessed so far. The remoteness of the region, comprising a mountainous area hardly to access and piedmont and valley floors densely covered by forest, peatbogs or water bodies might partly explain the lack of such studies. Therefore, the objective of this contribution is to document for the first time the occurrence of massive slope failures in the Fuegian Andes using a multidisciplinary approach. This involves the use of indirect methods such as applied geophysics and landscape morphometrics. The southwest-facing slope of Cerro Guanaco, near Ushuaia, hosts several slope failures, but a massive failure stands out. The morphostructural approach allowed the geometrical description of the main dimensional characteristics of the first megalandslide recognized in the Fuegian Andes, which involved almost 1,2 km(3) of material. On the other hand, the geophysical data has proved valuable in estimating the depth and characteristic of the buried detachment surface. The slope failure consisted of an initial translational movement followed by secondary slides and was developed shortly after the glacier recession. The gravitational processes represent an important element in the Fuegian deglacial landscape evolution.
机译:Fuegian andes,在南美洲最南端,是一个相对年轻的秃头景观,其中冰川糜烂缓解受到区域规模地质结构的强烈影响,导致深层纵向山谷,陡峭的丘陵山坡。然而,到目前为止,尚未评估对炎症冰块的岩石稳定性反应以及南端最南端景观演变中的引力过程的贡献。该地区的偏远,包括山区的山区,几乎无法访问和皮埃蒙特和山谷地板密集地覆盖着森林,Peatbogs或水体可以部分解释缺乏这些研究。因此,本贡献的目的是首次记录Fuegian和使用多学科方法的大规模斜坡故障的发生。这涉及使用间接方法,例如应用的地球物理学和景观形态化学。 Ushuaia附近的塞罗·瓜凯的面向西南斜坡举办了几个斜坡故障,但巨大的失败突出了。形态化方法允许在Fuegian andes中识别的第一个MeGalandslide的主要尺寸特征的几何描述,该肌肉均涉及近1,2km(3)材料。另一方面,地球物理数据已经证明了估计掩埋脱离表面的深度和特征的有价值。边坡故障包括初始平移运动,然后是二次载玻片,并且在冰川衰退后不久发展。引力过程代表了Fuegian夜光景观演化中的重要因素。

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  • 来源
    《Journal of South American earth sciences》 |2020年第8期|102617.1-102617.17|共17页
  • 作者单位

    Univ Buenos Aires Dept Ciencias Geol Fac Ciencias Exactas & Nat Ciudad Univ C1428EHA Buenos Aires DF Argentina|Univ Buenos Aires Inst Geociencias Basicas Aplicadas & Ambientales CONICET Buenos Aires DF Argentina;

    Univ Buenos Aires Dept Ciencias Geol Fac Ciencias Exactas & Nat Ciudad Univ C1428EHA Buenos Aires DF Argentina|Univ Buenos Aires Inst Geociencias Basicas Aplicadas & Ambientales CONICET Buenos Aires DF Argentina;

    Univ Buenos Aires Dept Ciencias Geol Fac Ciencias Exactas & Nat Ciudad Univ C1428EHA Buenos Aires DF Argentina|Inst Estudios Andinos Don Pablo Groeber IDEAN CONICET Buenos Aires DF Argentina;

    Univ Urbino Campus Sci E Mattei Dipartimento Sci Pure & Applicate I-61020 Urbino FU Italy;

    Univ Buenos Aires Fac Ciencias Exactas & Nat Dept Fis CONICET Inst Fis Buenos Aires IFIBA CONICET Buenos Aires DF Argentina;

    Ist Nazl Oceanog & Geofis Sperimentale OGS Borgo Grotta Gigante 42-C I-34010 Trieste Italy;

    Univ Buenos Aires Dept Ciencias Geol Fac Ciencias Exactas & Nat Ciudad Univ C1428EHA Buenos Aires DF Argentina|Univ Buenos Aires Inst Geociencias Basicas Aplicadas & Ambientales CONICET Buenos Aires DF Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Landscape evolution; Fuegian Andes; Geophysics; Morphometrics;

    机译:景观演变;Fuegian andes;地球物理;形态学仪;

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