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Geomorphic control on regional glacier lake outburst flood and debris flow activity over northern Tien Shan

机译:天山北部地区冰川湖爆发洪水和泥石流活动的地貌控制

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摘要

Glacier lake outburst floods (GLOFs) and related debris flows (DF) are significant natural threats in the Tien Shan Mountains. Their occurrence is favoured by the formation of new glacier lakes and the destabilization of moraines and hillslopes due to climate warming. Understanding the frequency-magnitude of these processes is essential for the implementation of Disaster Risk Reduction strategies. Yet, long-term records of past GLOFs or DF in the region are almost completely missing, which renders rational hazard and risk assessments difficult. Here, we present a unique, multi-century dataset of regional GLOF-DF reconstruction for the Tien Shan based on tree ring analyses from six different torrential fans, and provide insights on regional processes activity. Based on this dataset, we also test whether GLOF-DF activity is related to glacier degradation and changes in geomorphic characteristics at the catchment scale. Results from 430 disturbed trees growing on six different DF fans suggest frequent GLOF-DF activity since the 19th century, which is consistent with available historical records. We also observe an increase in process activity during the mid-20th century coinciding with phases of glacier stagnation or even slight glacier advances. This means GLOF-DF activity in northern Tien Shan is inversely related to moraine-glacier ratios as well as to glacier area shrinkage rates and fan characteristics (such as slope and depositional area). These findings imply that glaciological and geomorphic features could be used for regional susceptibility assessments in the future. Results presented here are the longest, annually resolved GLOF-DF series in the region, if not worldwide, and constitute a unique dataset to understand process variability. As such, they should be used for further climate change adaptation to mitigate natural hazard and risk in the region.
机译:冰川湖爆发洪水(GLOF)和相关的泥石流(DF)是天山山区的重大自然威胁。由于新的冰川湖的形成以及由于气候变暖而造成的山区和山坡的不稳定,它们的出现受到了青睐。了解这些过程的频率幅度对于实施减少灾害风险策略至关重要。但是,该地区过去的GLOF或DF的长期记录几乎完全消失了,这使得进行合理的危害和风险评估变得困难。在这里,我们基于来自六个不同洪流爱好者的年轮分析,展示了天山区域GLOF-DF重建的独特,多世纪的数据集,并提供了有关区域过程活动的见解。基于此数据集,我们还测试了GLOF-DF活动是否与冰川退化以及流域尺度上的地貌特征变化有关。六只不同的DF风扇上生长的430多棵受干扰树木的结果表明,自19世纪以来,GLOF-DF的活动频繁。这与现有的历史记录一致。我们还观察到,在20世纪中叶,与冰川停滞甚至略微的冰川发展阶段相伴的过程活动有所增加。这意味着天山北部的GLOF-DF活动与冰ora-冰川比率以及冰川面积的收缩率和扇形特征(例如坡度和沉积面积)成反比。这些发现暗示,将来可以将冰川和地貌特征用于区域敏感性评估。此处显示的结果是该地区(即使不是全球范围)中最长的,每年解析的GLOF-DF系列,并且构成了了解过程变异性的唯一数据集。因此,应将其用于进一步适应气候变化,以减轻该地区的自然灾害和风险。

著录项

  • 来源
    《Global and planetary change》 |2019年第5期|50-59|共10页
  • 作者单位

    Natl Acad Sci, Inst Water Problems & Hydroenergy, Bishkek, Kyrgyzstan;

    Lomonosov Moscow State Univ, Fac Geog, Moscow, Russia;

    Natl Acad Sci, Inst Water Problems & Hydroenergy, Bishkek, Kyrgyzstan;

    Natl Acad Sci, Inst Water Problems & Hydroenergy, Bishkek, Kyrgyzstan;

    Univ Geneva, Dept Earth & Environm Sci, Dendrolab Ch, CH-1205 Geneva, Switzerland|Univ Geneva, Inst Environm Sci, Climate Change Impacts & Risks Anthropocene C CIA, CH-1227 Carouge, Switzerland|Univ Geneva, Dept FA Forel Aquat & Environm Sci, CH-1205 Geneva, Switzerland;

    Univ Geneva, Dept Earth & Environm Sci, Dendrolab Ch, CH-1205 Geneva, Switzerland|Univ Geneva, Inst Environm Sci, Climate Change Impacts & Risks Anthropocene C CIA, CH-1227 Carouge, Switzerland;

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

    GLOF; Debris flow; Cryosphere; Tree rings; Dendrogeomorphology; Tien Shan; Kyrgyzstan;

    机译:高尔夫球;泥石流;冰河圈;树环;Dendro地貌;天山;吉尔吉斯斯坦;

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