Drilling into a deep buried valley (ICDP DOVE): a 252 m long sediment succession from a glacial overdeepening in northwestern Switzerland

IF 1.6 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Sebastian Schaller, Marius W. Buechi, Bennet Schuster, Flavio S. Anselmetti
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Abstract

Abstract. The modern Alpine landscape and its foreland were strongly impacted by the numerous glacier advance and retreat cycles during the Middle-to-Late Pleistocene. Due to the overall erosive character of each glaciation cycle, however, direct traces of older glaciations tend to be poorly preserved within the formerly glaciated domains of the pan-Alpine area. Nevertheless, sediments of older glaciations may occur hidden under the modern surface in buried glacially overdeepened troughs that reach below the normal level of fluvial erosion (fluvial base level). These sedimentary archives, partly dating back to the Middle Pleistocene period, are of great scientific value for reconstructing the timing and extent of extensive Alpine glaciation, paleoclimate, and paleoenvironmental changes in the past and help to better understand ongoing and future changes in the pan-Alpine area. Therefore, the International Continental Scientific Drilling Program (ICDP) project DOVE (Drilling Overdeepened Alpine Valleys) targets several of these glacial overdeepened sedimentary basins to recover their sedimentary infills. In the frame of the DOVE project, a 252 m long drill core of unconsolidated Quaternary sediments was recovered in northern Switzerland from an over 300 m deep glacially overdeepened structure (“Basadingen Trough”) formed by the former Rhine Glacier lobe system. The recovered sedimentary succession was divided into three stratigraphic units on the basis of lithological and petrophysical characteristics. The lowest unit, deposited below the fluvial base level, consists of an over 200 m thick succession of glacial to (glacio)lacustrine sediments and contains remains of possibly two glaciation cycles. Overlying this lowermost succession, an ∼ 37 m thick fluvial-to-glaciofluvial gravel deposit occurs, which correlates to a locally outcropping Middle Pleistocene formation (“Buechberg Gravel Complex”). The sediment succession is capped by an ∼ 11 m thick diamictic succession interpreted as the subglacial till from the later extensive glaciation, including the regional glaciation during the Last Glacial Maximum. The recovered sediment succession thus supports the proposed multi-phase origin of trough formation and its infill.
钻入深埋山谷(ICDP DOVE):瑞士西北部冰川过度加深的252米长的沉积物序列
摘要在中晚更新世期间,现代阿尔卑斯地貌及其前陆受到多次冰川进退旋回的强烈影响。然而,由于每个冰期旋回的整体侵蚀特征,在泛阿尔卑斯地区的原冰期区域内,更古老冰期的直接痕迹往往保存得很差。然而,更古老的冰川沉积物可能隐藏在现代地表之下,埋藏在冰川过深的沟槽中,达到低于正常河流侵蚀水平(河流基准面)。这些沉积档案部分可追溯至中更新世,对于重建过去广泛的高寒冰川作用、古气候和古环境变化的时间和范围,有助于更好地了解泛高寒地区正在发生和未来的变化,具有重要的科学价值。因此,国际大陆科学钻探计划(ICDP)项目DOVE(钻探超深阿尔卑斯山谷)以这些冰川超深沉积盆地为目标,以恢复其沉积充填物。在DOVE项目的框架内,在瑞士北部一个超过300米深的冰川超深构造(“Basadingen槽”)中回收了一个252米长的第四纪松散沉积物钻芯,该构造是由前莱茵冰川裂片系统形成的。根据岩性和岩石物理特征,将恢复的沉积序列划分为3个地层单元。最低的单元,沉积在河流基准面以下,由超过200米厚的冰川到(冰川)湖泊沉积物序列组成,可能包含两个冰川旋回的遗迹。在这个最底层的序列上,有一个~ 37米厚的河流-冰川河流砾石矿床,这与局部露头的中更新世地层(“Buechberg砾石杂岩”)有关。沉积物序列由一层~ 11 m厚的双泥质序列覆盖,这被解释为后期广泛冰川作用(包括末次盛冰期的区域冰川作用)的冰下沉积物。因此,恢复的沉积物序列支持了海槽形成及其充填的多期成因。
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来源期刊
Scientific Drilling
Scientific Drilling GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
0.00%
发文量
12
审稿时长
27 weeks
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