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Erosion and morphology of a debris flow caused by a glacial lake outburst flood, Western Norway

机译:挪威西部冰川湖爆发洪水造成的泥石流的侵蚀和形态

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This article documents a 240,000-m(3) debris flow resulting from a glacial lake outburst flood in Fjaerland, Western Norway, May 8, 2004. The event started when a glacial lake breached a moraine ridge. The ensuing debris flow was able to erode material along its path, increasing in volume from about 25,000 to 240,000 m(3) before depositing about 3 km from its starting point. Field investigations, pre- and post-flow aerial photographs as well as airborne laser scanning (LIDAR) were used to describe and investigate the flow. The most striking and unusual feature of this case study is the very pronounced erosion and bulking. We have made a detailed study of this aspect. Erosion and entrainment is quantified and the final volume of the debris flow is determined. We also present geometrical and sedimentological features of the final deposit. Based on the Fjaerland data, we suggest that a self-sustaining mechanism might partly explain the extreme growth of debris flows traversing soft terrain.
机译:本文记录了2004年5月8日挪威西部Fjaerland的冰川湖爆发洪水造成的240,000-m(3)泥石流。该事件始于冰川湖突破冰ora山脊时。随后的泥石流能够沿其路径侵蚀材料,其体积从大约25,000增至240,000 m(3),然后从其起点沉积约3 km。现场调查,流动前后的航拍照片以及机载激光扫描(LIDAR)用于描述和研究流动。该案例研究最显着和最不寻常的特征是非常明显的侵蚀和膨胀。我们对此方面进行了详细研究。量化侵蚀和夹带,并确定泥石流的最终体积。我们还介绍了最终矿床的几何和沉积学特征。根据Fjaerland数据,我们建议一种自我维持的机制可能部分解释了穿越软地形的泥石流的极端增长。

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