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Rock-type control on erosion-induced uplift, eastern Swiss Alps

机译:岩石类型控制对侵蚀造成的隆升,瑞士阿尔卑斯山东部

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摘要

There is growing evidence that Quaternary rock uplift in parts of the European Alps is a consequence of climate-and erosion-driven isostatic rebound. Contemporary rates of rock uplift U in the Swiss Alps show two distinctive dome-like peak regions that attain -1.6 mm yr~(-1). We focus on the Alpenrhein catchment and its surroundings, where one of these peak regions spatially coincides with widely exposed Cretaceous Bundner schist and lower Tertiary flysch. Field assessments and analyses of hillslope gradient distributions quantitatively demonstrate the low rock-mass strength and high readability of these rocks. This is reflected in mean postglacial catchment erosion rates D -4 mm yr~(-1) , as opposed to 0.7 mm yr~(-1) in more resistant crystalline rocks. Though largely inferred from landslide- and debris-flow prone tributary catchments <20 km~2, the localised erosion rates in Bundner schist and flysch are among the highest documented for the Alps, and corroborated by historic suspended sediment yields, and thus export, from the region. We further find that the steepness of bedrock rivers, the density of large landslides, and D correlate with the highest values of U. Our observations highlight the possibility that erosion of mechanically weak Bundner schist and flysch enhanced by large landslides may have contributed to regional crustal unloading, and concomitant rock uplift. Irrespective of whether this is betraying a coupling between longterm uplift and erosion modulated by rock type, our findings indicate that long-term (10~3 to 10~4 Ayr) geomorphic signals contained in bedrock-river steepness, spatial density of large landslides, and postglacial erosion rates strikingly correlate with regional gradients of historic (10~1 yr) rock uplift rates.
机译:越来越多的证据表明,欧洲阿尔卑斯山部分地区的第四纪岩石隆起是气候和侵蚀驱动的等静压回弹的结果。在瑞士阿尔卑斯山,当代岩石抬升速度U表现出两个独特的圆顶状峰区,达到-1.6 mm yr〜(-1)。我们专注于阿尔卑斯山流域及其周围地区,其中这些高峰区域之一在空间上与广泛暴露的白垩纪邦德片岩和低第三系蝇sch相吻合。野外评估和山坡梯度分布分析定量显示了这些岩石的低岩体强度和高可读性。这反映在冰川后流域平均侵蚀率D -4 mm yr〜(-1)上,而抵抗力较强的晶体岩石的腐蚀速率为0.7 mm yr〜(-1)。尽管很大程度上是由易发生滑坡和泥石流的支流集水量<20 km〜2推断出的,但在Bundner schist和flysch的局部侵蚀率是阿尔卑斯山记录的最高记录,并由历史性的悬浮泥沙产量和因此而来的出口所证实。该区域。我们进一步发现,基岩河流的陡度,大滑坡的密度和D与U的最大值相关。我们的观察结果突出显示了机械性弱的邦德片岩和飞石的侵蚀可能由区域性地壳造成的可能性卸载,并伴有岩石隆起。无论这是否与长期抬升和岩石类型调节的侵蚀之间的耦合无关,我们的研究结果表明,基岩-河流陡度,大滑坡的空间密度中包含长期(10〜3至10〜4 Ayr)地貌信号,冰川后侵蚀速率与历史(10〜1年)岩石抬升速率的区域梯度显着相关。

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