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首页> 外文期刊>Basin research >Relations between denudation, glaciation, and sediment deposition: Implications from the Plio-Pleistocene Central Alps
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Relations between denudation, glaciation, and sediment deposition: Implications from the Plio-Pleistocene Central Alps

机译:剥蚀,冰川作用和沉积物沉积之间的关系:上新世-中新世中部阿尔卑斯山的含意

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Despite abundant data on the early evolution of the Central Alps, the latest stage exhumation history, potentially related to relief formation, is still poorly constrained. We aim for a better understanding of the relation between glaciation, erosion and sediment deposition. Addressing both topics, we analysed late Pliocene to recent deposits from the Upper Rhine Graben and two modern river sands by apatite fission-track and (U-Th-Sm)/He thermochronology. From the observed age patterns we extracted the sediment provenance and paleo-erosion history of the Alpine-derived detritus. Due to their pollen and fossil record, the Rhine Graben deposits also provide information on climatic evolution, so that the erosion history can be related to glacial evolution during the Plio-Pleistocene. Our data show that Rhine Graben deposits were derived from Variscan basement, Hegau volcanics, Swiss Molasse Basin, and the Central Alps. The relations between glaciation, Alpine erosion, and thermochronological age signals in sedimentary rocks are more complex than assumed. The first Alpine glaciation during the early Pleistocene did not disturb the long-term exhumational equilibrium of the Alps. Recent findings indicate that main Alpine glaciation occurred at ca. 1?Ma. If true, then main Alpine glaciation was coeval with an apparent decrease of hinterland erosion rates, contrary to the expected trend. We suggest that glaciers effectively sealed the landscape, thus reducing the surface exposed to erosion and shifting the area of main erosion north toward the Molasse basin, causing sediment recycling. At around 0.4?Ma, erosion rates increased again, which seems to be a delayed response to main glaciation. The present-day erosion regime seems to be dominated by mass-wasting processes. Generally, glacial erosion rates did not exceed the pre-glacial long-term erosion rates of the Central Alps. Basin Research
机译:尽管有大量关于中阿尔卑斯山早期演变的数据,但最新阶段的掘尸史(可能与救济形成有关)仍然受限制。我们旨在更好地了解冰川,侵蚀和沉积物沉积之间的关系。针对这两个主题,我们通过磷灰石裂变径迹和(U-Th-Sm)/ He热年代学分析了上新世晚期到上莱茵河格拉本和两个现代河砂的最近沉积。从观察到的年龄模式中,我们提取了源自高山的碎屑的沉积物来源和古侵蚀历史。由于其花粉和化石记录,莱茵格拉本沉积物还提供了有关气候演变的信息,因此侵蚀历史可能与上新世期间的冰川演化有关。我们的数据表明,莱茵河格拉本沉积物来自瓦里斯卡纳地下室,黑高火山,瑞士莫拉斯盆地和中阿尔卑斯山。冰川作用,高山侵蚀和沉积岩石中的热年代学信号之间的关系比假设的要复杂。在更新世早期的第一次高山冰川活动并未干扰阿尔卑斯山的长期掘尸平衡。最近的发现表明,主要的高山冰期发生在约2月。 1个如果为真,那么主要的高山冰川成冰期与腹地侵蚀率明显下降相反,这与预期趋势相反。我们建议冰川可以有效地封闭景观,从而减少暴露于侵蚀的表面,并将主要侵蚀区域向北移向Molasse盆地,从而导致沉积物回收。在大约0.4?Ma时,侵蚀速率再次增加,这似乎是对主要冰川作用的延迟响应。今天的侵蚀制度似乎由大量浪费的过程主导。通常,冰川侵蚀率不超过中阿尔卑斯山冰川前的长期侵蚀率。流域研究

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