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Rapid sequestration of rock avalanche deposits within glaciers

机译:快速隔离冰川中的雪崩沉积物

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Topographic development in mountainous landscapes is a complex interplay between tectonics, climate and denudation. Glaciers erode valleys to generate headwall relief, and hillslope processes control the height and retreat of the peaks. The magnitude-frequency of these landslides and their long-term ability to lower mountains above glaciers is poorly understood; however, small, frequent rockfalls are currently thought to dominate. The preservation of rarer, larger, landslide deposits is exceptionally short-lived, as they are rapidly reworked. The 2013 Mount Haast rock avalanche that failed from the slopes of Aoraki/Mount Cook, New Zealand, onto the glacier accumulation zone below was invisible to conventional remote sensing after just 3 months. Here we use sub-surface data to reveal the now-buried landslide deposit, and suggest that large landslides are the primary hillslope erosion mechanism here. These data show how past large landslides can be identified in accumulation zones, providing an untapped archive of erosive events in mountainous landscapes.
机译:山区景观的地形发展是构造,气候和剥蚀之间的复杂相互作用。冰川侵蚀山谷以产生顶壁浮雕,山坡过程控制着山峰的高度和后退。人们对这些滑坡的发生频率和长期降低冰川上方山脉的能力了解甚少。但是,目前认为小而频繁的落石占主导地位。稀有的,较大的滑坡沉积物的保存时间极短,因为它们需要迅速地重新加工。 2013年的哈斯特山岩石雪崩从新西兰的奥拉基/库克山山坡滑落到下面的冰川堆积区,仅用了3个月,常规遥感就看不见了。在这里,我们使用地下数据来揭示现在被埋藏的滑坡沉积物,并提出大型滑坡是这里主要的山坡侵蚀机制。这些数据显示了如何在堆积带中识别出过去的大型滑坡,从而提供了未开发的山区景观侵蚀事件档案。

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