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Coarse sediment dynamics in a proglacial fluvial system(Fagge River, Tyrol)

机译:冰河系河流系统中粗泥沙动力学(法格河,蒂罗尔州)

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摘要

Alpine regions are strongly affected by the global climate change. Alpine glaciers have had a negative net balance since the end of the Little Ice Age (LIA). Proglacial areas with freshly exposed subglacial sediments are expanding due to the retreat of glaciers. These sediments (moraines, tills, glaciofluvial deposits, etc.) are unconsolidated, nearly unvegetated and therefore unstable and highly vulnerable to surface changes triggered by geomorphological processes. Particularly during heavy rainfall events, glacial and glaciofluvial deposits are remobilized and transported within the fluvial system. This study is focused on rapidly changing surfaces in the proglacial fluvial system of the Fagge River, which drains the Gepatschferner, one of the biggest glaciers in Austria, and is located in the Kaunertal/Austria. The field site covers an area from the snout of the glacier (2206 m a.s.l.) to the outlet of the Fagge River into the Gepatsch Reservoir at (1750 m a.s.l.). The main goal of this study is to measure surface changes and quantify mass balances of important sediment sources (alluvial plains, bars) in the proglacial area, which are directly connected to the fluvial system. For this purpose, multiple terrestrial laser scans are performed with an Optech ILRIS-3_6D laser scanner. During the field season in 2011 and 2012, several sediment sources were scanned at least twice. Significant surface changes occurred during the investigation period, mainly caused by an extreme flood event after heavy rain on August 26, 2012. Large amounts of sediment (>70,000 m~3) were remobilized, especially in the upper parts of the proglacial area, and were accumulated further downstream during this event.
机译:高山地区受到全球气候变化的强烈影响。自小冰河时代(LIA)结束以来,高山冰川的净余额一直为负。由于冰川的退缩,具有新近暴露的冰川下沉积物的冰川地区正在扩大。这些沉积物(火山岩,耕till,冰川河流沉积物等)是疏松的,几乎没有植被的,因此是不稳定的,并且极易受地貌过程触发的表面变化的影响。特别是在暴雨事件期间,冰川和冰川河流沉积物在河流系统内转移并运输。这项研究的重点是法格河(Fagge River)冰河河流系统中快速变化的表面,该系统排泄了奥地利最大的冰川之一,位于奥地利的Kaunertal / Gepatschferner。实地覆盖了从冰川口(2206 m a.s.l.)到Fagge河出口到Gepatsch水库(1750 m a.s.l.)的区域。这项研究的主要目的是测量冰河地区与河流系统直接相关的重要沉积物来源(冲积平原,条形)的表面变化并量化其质量平衡。为此,使用Optech ILRIS-3_6D激光扫描仪执行了多个地面激光扫描。在2011年和2012年的田间季节,至少两次对几种沉积物来源进行了扫描。在调查期间,表面发生了重大变化,主要是由于2012年8月26日的大雨后发生了特大洪灾事件。大量泥沙(> 70,000 m〜3)被转移,特别是在冰河地区的上部,以及在此事件中向下游进一步积累。

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  • 来源
    《Geomorphology》 |2014年第1期|88-97|共10页
  • 作者

    Henning Baewert; David Morche;

  • 作者单位

    Institute of Geosciences and Geography, Martin-Luther-University Halle-Wittenberg, Von-Seckendorff-Platz 4, 06120 Halle (Saale), Germany;

    Institute of Geosciences and Geography, Martin-Luther-University Halle-Wittenberg, Von-Seckendorff-Platz 4, 06120 Halle (Saale), Germany;

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

    Proglacial; Glacier; Sediment transport; Mountain river; LiDAR; Kaunertal;

    机译:gla亵冰川;泥沙运输;山区河流;激光雷达考纳塔尔;

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