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首页> 外文期刊>Geomorphology >Estimating glacier-bed overdeepenings as possible sites of future lakes in the de-glaciating Mont Blanc massif (Western European Alps)
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Estimating glacier-bed overdeepenings as possible sites of future lakes in the de-glaciating Mont Blanc massif (Western European Alps)

机译:在冰川消融的勃朗峰地块(西欧阿尔卑斯山)中,估计冰川床加深可能是未来湖泊的可能场所

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摘要

De-glaciating high mountain areas result in new landscapes of bedrock and debris where permafrost can degrade, persist or even newly form in cases, and of new lakes in glacier bed overdeepenings (GBOs) becoming ice-free. These landscapes with new lakes in close neighborhood to over-steepened and perennially frozen slopes are prone to chain reaction processes (e.g. rock-ice avalanches into lakes triggering impact waves, dam breach or overtopping, and debris flows) with potentially far-reaching run-out distances causing valley floors devastation. The frequency, magnitude and zonation of hazards are shifting, requiring integrative approaches combining comprehensive information about landscape evolution and related processes to support stakeholders in their adaptation strategies. In this study, we intend to setup an essential baseline for such an integrative approach in the Mont Blanc massif (MBM), which is a typical high-mountain range affected by de-glaciation processes. We first (i) predict and (ii) detect potential GBOs by combining the GlabTop model with a visual analysis based on morphological indications of glacier flow through over-deepened bed parts. We then (iii) determine the level of confidence concerning the resulting information, and (iv) estimate the approximate time range under which potential lakes could form. The location of the predicted GBOs and the shape of glacier beds are evaluated against currently forming water bodies at retreating glacier snouts, and seismic and ice penetrating radar measurements on the Argentiere glacier. This comparison shows that the location of predicted GBOs is quite robust whereas their morphometric characteristics (depth, volume) are highly uncertain and tend to be underestimated. In total, 48/80 of the predicted or detected GBOs have a high level of confidence. In addition to five recently formed water bodies at glacier snouts, one of the high confidence GBOs (Talefre glacier) which is also the most voluminous one could form imminently (during coming years), if not partially or totally drained through deeply incised gorges at the rock threshold. Twelve other lakes could form within the first half of the century under a constant or accelerated scenario of continued glacier retreat. Some of them are located below high and permanently frozen rock walls prone to destabilization and high-energy mass movements, hinting at possible hot spots in terms of hazards in the coming decades, where more detailed analysis would be required. (C) 2019 Elsevier B.V. All rights reserved.
机译:高山冰川消融会导致基岩和碎屑的新景观,在这种情况下,多年冻土可能退化,持续存在甚至重新形成,而冰川床深水层(GBO)中的新湖泊变得无冰。这些景观中的新湖与过度加深且常年冰冻的山坡非常接近,易于发生连锁反应过程(例如,岩石冰雪崩入湖中,触发冲击波,大坝破裂或越过顶部,以及泥石流),并且可能会影响深远。造成山谷地面破坏的距离。危害的频率,严重程度和分区在变化,需要采用综合方法,结合有关景观演变和相关过程的综合信息,以支持利益相关者制定其适应策略。在这项研究中,我们打算为勃朗峰地块(MBM)中的这种整合方法建立必要的基线,这是受冰川消融过程影响的典型的高山山脉。我们首先(i)预测和(ii)通过将GlabTop模型与基于通过深水床部分冰川流动的形态学指示的视觉分析相结合来检测潜在的GBO。然后,我们(iii)确定有关结果信息的置信度,并且(iv)估计可能形成湖泊的大概时间范围。在退缩的冰川口中,根据当前形成的水体,以及在阿根廷冰川上的地震和冰穿透雷达测量,评估了预测的GBO的位置和冰川床的形状。该比较表明,预测的GBO的位置非常可靠,而其形态特征(深度,体积)则高度不确定,并且往往被低估。总体而言,预测或检测到的GBO中有48/80具有高度的置信度。除了最近在冰川口形成的五个水体以外,如果不是通过深切峡谷的一部分或全部将其排干的话,也将很快(未来几年)形成一个最大量的高可信度GBO(Talefre冰川)。岩石门槛。在本世纪上半叶,在冰川不断退缩的情况下,可能会形成十二个湖泊。它们中的一些位于高且永久冻结的岩壁下方,容易造成不稳定和高能运动,提示在未来几十年内可能存在的危险热点,需要进行更详细的分析。 (C)2019 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Geomorphology》 |2020年第1期|106913.1-106913.21|共21页
  • 作者

  • 作者单位

    Univ Savoie Mt Blanc Univ Grenoble Alpes EDYTEM CNRS F-73000 Chambery France;

    Univ Zurich Geog Dept CH-8057 Zurich Switzerland;

    Univ Zurich Geog Dept CH-8057 Zurich Switzerland|Univ Fribourg Dept Geosci CH-1700 Fribourg Switzerland;

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

    High mountains; De-glaciating landscapes; Glacier-bed overdeepenings; Potential future lakes;

    机译:高山;冰川消融;冰川床深化;潜在的未来湖泊;

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