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Rapid formation of a modern bedrock canyon by a single flood event

机译:通过一次洪水事件快速形成现代基岩峡谷

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Deep river canyons are thought to form slowly over geological time (see, for example, ref. 1), cut by moderate flows that reoccur every few years. In contrast, some of the most spectacular canyons on Earth and Mars were probably carved rapidly during ancient megaflood events. Quantification of the flood discharge, duration and erosion mechanics that operated during such events is hampered because we lack modern analogues. Canyon Lake Gorge, Texas, was carved in 2002 during a single catastrophic flood. The event offers a rare opportunity to analyse canyon formation and test palaeohydraulic- reconstruction techniques under known topographic and hydraulic conditions. Here we use digital topographic models and visibleear-infrared aerial images from before and after the flood, discharge measured during the event, field measurements and sediment-transport modelling to show that the flood moved metre-sized boulders, excavated ~7m of limestone and transformed a soil-mantled valley into a bedrock canyon in just ~3 days. We find that canyon morphology is strongly dependent on rock type: plucking of limestone blocks produced waterfalls, inner channels and bedrock strath terraces, whereas abrasion of cemented alluvium sculpted walls, plunge pools and streamlined islands. Canyon formation was so rapid that erosion might have been limited by the ability of the flow to transport sediment.We suggest that our results might improve hydraulic reconstructions of similar megafloods on Earth and Mars.
机译:据认为,深河峡谷在地质时期内形成缓慢(例如,参见参考文献1),并被每隔几年出现的中等流量所切断。相比之下,地球和火星上一些最壮观的峡谷可能是在古代特大洪水事件中迅速雕刻的。由于我们缺乏现代的类似物,因此无法对此类事件中的洪水排放量,持续时间和侵蚀机理进行量化。得克萨斯州的峡谷湖峡谷是在2002年一场特大洪水中雕刻的。该活动提供了难得的机会,可以在已知的地形和水力条件下分析峡谷形成并测试古水力重建技术。在这里,我们使用数字地形模型和洪水前后的可见/近红外航拍图像,事件发生期间的流量测量,现场测量和沉积物传输模型来显示洪水移动了几米大小的巨石,开挖了约7m的石灰石并在短短的三天内将土壤覆盖的山谷变成了基岩峡谷。我们发现峡谷的形态在很大程度上取决于岩石类型:石灰石块的拔出产生了瀑布,内部通道和基岩层状阶地,而胶结冲积雕刻墙,冲水池和流线型岛的磨损。峡谷形成如此之快,以至于侵蚀可能受到水流输送泥沙的能力的限制。我们认为我们的结果可能会改善地球和火星上类似大型洪水的水力重建。

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