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首页> 外文期刊>Science of the total environment >Complex causes of landslides after ice sheet retreat: Post-LGM mass movements in the Northern Patagonian Icefield region
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Complex causes of landslides after ice sheet retreat: Post-LGM mass movements in the Northern Patagonian Icefield region

机译:冰盖后山体滑坡的复杂原因:北巴塔哥尼亚州冰野地区的LGM群众运动

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摘要

Although the dynamics of individual rock-slope failures above recently shrinking glaciers have received increasing study, less is known about the spatial distribution of landslides in paraglacial settings. Here, we present a landslide inventory for large deglaciated area (-100,000 km~2) situated within the Last Glacial Maximum (LGM) limits of the Northern Patagonian Icefield (NPI). Using satellite images and the TanDEM-X digital elevation model, we mapped a total of 15.543 landslides, among which 1006 are deep-seated landslides (DSLs) with area >0.01 km~2. The distribution of DSLs is highly asymmetric in a W-E transect of the NPI region, with pronounced clustering along the semi-arid eastern front of the Patagonian Andes. The most strongly affected domain is volcanic tablelands overlying weak Miocene sedimentary rocks, but DSLs tend to also cluster along recently deglaciated (i.e. since the end of the 19th century) eastern margin of the NPI. Compared with other high mountain regions, alpine valleys of the Patagonian Andes are affected by DSLs only in <1% of their area, an order of magnitude lower than in other reported deglaciated mountains. The modest incidence of DSLs in the Patagonian Andes is due to dominance of hard granitoid rocks and relatively weak historical seismic activity. We conclude that 1) geological conditions control the distribution of DSLs and their types in the NPI region; 2) paraglacial effects play secondary (although locally important) roles in the origin of DSLs; 3) local clusters of large DSLs originate due to specifics of the post-LGM landscape evolution, involving drawdowns of glacial lakes and incision of rivers into the unconsolidated deposits; and 4) increased abundance of landslides above the recently shrinking margin of the NPI results from the repeated Holocene fluctuations of glacier snouts around the Little Ice Age (UA) glacier limits and the spatial coincidence of glacial debuttressing effects with the presence of active faults.
机译:尽管最近缩小冰川的单个摇摆失败的动态受到了增加的研究,但较少是关于滑动扫描环境中山体滑坡的空间分布所知的。在这里,我们为大型冰川最大(LGM)限制的大型渐裂区域(-100,000 km〜2)提出了一个山滑坡库存,北巴塔哥代冰岛(NPI)。使用卫星图像和TANDEM-X数字高度模型,我们共映射了15.543个山体滑坡,其中1006个是深度坐垫的滑坡(DSL),面积> 0.01 km〜2。 DSL的分布在NPI区域的W-E横断波中具有高度不对称的,沿着巴塔哥斯人南部的半干旱东部的明显聚类。最强烈的域名是覆盖弱的内科沉积岩的火山海岛,但DSL往往也沿着最近被解析的(即19世纪末以来)NPI的东部边缘。与其他高山地区相比,巴塔哥尼亚州的高山谷仅受DSL的影响,仅在其面积的<1%,比其他报告的解开山脉低的数量级。巴塔哥斯州和巴塔格尔斯在巴塔格尔斯的适度发病率是由于硬质花岗岩岩石和相对较弱的历史地震活动的主导地位。我们得出结论,1)地质条件控制DSL的分布及其在NPI区域中的类型; 2)滑稽效应在DSL的起源中发挥次要(虽然本地重要的)角色; 3)大型DSL的局部集群由于后LGM景观演变的细节而起源,涉及冰川湖泊和河流切口进入未合并的存款; 4)增加了高于NPI最近收缩边缘的山体滑坡的丰富度结果来自冰川鼻子周围的冰川鼻子的重复全新世(UA)冰川限制以及冰川脱落效应的空间重合与积极断层的存在。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|143684.1-143684.17|共17页
  • 作者单位

    Department of Physical Geography and Ceoecology Faculty of Science University of Ostrava Chittussiho 10 710 00 Ostrava Czech Republic;

    Department of Physical Geography and Ceoecology Faculty of Science University of Ostrava Chittussiho 10 710 00 Ostrava Czech Republic;

    Department of Physical Geography and Ceoecology Faculty of Science University of Ostrava Chittussiho 10 710 00 Ostrava Czech Republic;

    Universidad de Buenos Aires Facultad de Ciencias Exactas y Naturales Departamento de Ciencias Geologicas Intendente Gueiraldes 2160 C1428EGA CABA Argentina Instituto de Estudios Andinos (IDEAN) UBA-CONICET Argentina;

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

    Deglaciation; Landslides; Mapping; Northern Patagonian Icefield;

    机译:亡观;山体滑坡;映射;北巴塔哥代伊斯兰菲尔德;

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