最后的芬诺斯康迪亚冰原南部边缘古冰缘的千年尺度波动

Karol Tylmann, W. Wysota, V. Rinterknecht, P. Moska, Aleksandra Bielicka-Giełdoń
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引用次数: 0

摘要

摘要本文首次在地面上记录了上一个冰川周期中最后一个芬诺斯坎迪亚冰原(FIS)南部边缘地区的千年尺度古冰缘振荡。研究区域位于波兰北部,靠近最后一块冰原的最大极限。FIS 南缘古冰缘振荡的年代学和动力学是基于发光和 10Be 地表暴露测年相结合的方法。光激发发光法(OSL)被用来测定夹在基底冰碛层中的砂质沉积物(冰川沉积物和填充化石围冰期楔块的风化沉积物)的年代。根据 OSL 年龄序列和岩石地层学的贝叶斯模型,确定了最有可能的堆积层年龄。10Be 地表暴露测年法适用于最后一次 FIS 最后撤退时留下的、位于冰川地貌表面的不规则巨石。我们的研究结果主要基于OSL年代学和贝叶斯模型,表明波兰北部最后一次FIS的千年尺度震荡发生在19 ka至17 ka之间。最后一次 FIS 在相对较短的时间内(2-3 ka)退缩并重新推进,在千年尺度的周期内留下了三次冰重新推进的岩石地层记录(基底堆积层):19.2±1.1、17.8±0.5 和 16.9±0.5 ka。尽管 14 块不规则巨石的 10Be 表面暴露年龄聚类不佳,但年龄分布的主要模式出现在 ∼18 ka,表明冰盖在一次再侵之后可能出现了后退的信号。我们探讨了这些振荡的动态变化,并将所提出的南部冰裂带进退周期与现有的末次冰期模式以及从海洋记录中推断出的末次冰裂带千年尺度波动进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Millennial-scale fluctuations of palaeo-ice margin at the southern fringe of the last Fennoscandian Ice Sheet
Abstract. The paper presents the first terrestrial record of millennial-scale palaeo-ice margin oscillations at the southern fringe of the last Fennoscandian Ice Sheet (FIS) during the last glacial cycle. The study area is located in northern Poland close to the last FIS maximum limit. The chronology and dynamics of palaeo-ice margin oscillations at the southern fringe of the FIS are based on combined luminescence and 10Be surface exposure dating. Optically stimulated luminescence (OSL) was used to date sandy deposits (fluvioglacial sediments and aeolian deposits filling fossil periglacial wedges) intercalating basal till layers. The most likely age of the tills was constrained by Bayesian modelling of the sequence of OSL ages and lithostratigraphy. 10Be surface exposure dating was used on erratic boulders left during the final retreat of the last FIS and resting on the surface of glacial landforms. Our results, which are mainly based on OSL chronology and Bayesian modelling, indicate millennial-scale oscillations of the last FIS in northern Poland between ∼19 and ∼17 ka. The last FIS retreated and re-advanced over a relatively short period of time (2–3 ka), leaving lithostratigraphic records (basal tills) of three ice re-advances over a millennial-scale cycle: 19.2±1.1, 17.8±0.5 and 16.9±0.5 ka. Despite 10Be surface exposure ages obtained for 14 erratic boulders being poorly clustered, the main mode of age distribution occurs at ∼18 ka and indicates a possible signal of the ice sheet retreat after one of the re-advances. We explore the dynamics of these oscillations and compare the proposed cycles of the southern FIS advances and retreats with existing patterns of the last deglaciation and millennial-scale fluctuations of the last FIS inferred from marine records.
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