冰川地貌演变对斯堪的纳维亚冰盖动力学和尺寸的影响

G. Jungdal-Olesen, Jane Lund Andersen, Andreas Born, V. Pedersen
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摘要

摘要斯堪的纳维亚半岛的地形和水深在第四纪的无数次冰川周期中被冰雪塑造。在本研究中,我们研究了形态变化如何反过来影响斯堪的纳维亚冰盖(SIS)。我们使用高阶冰盖模型模拟了斯堪的纳维亚冰盖在三个不同地形上经历的冰川期,代表了第四纪冰川地貌演变的不同阶段。通过用相同的气候条件对三个实验进行模拟,我们分离出了地貌形态变化对冰盖演化和动态的影响。我们发现,斯堪的纳维亚半岛第四纪早期冰川的范围和体积受到冰川前水深的限制,直到冰川沉积物填平了北海的洼地,并形成了挪威大陆架。从第四纪中晚期(0.5Ma)开始,水深被充分填满,冰盖向南扩张的速度加快,导致冰盖的体积和范围相对增大。此外,我们还表明,近代冰川期挪威海峡的形成限制了冰原向南扩张,只允许冰原在接近冰川最大值时向北海南部推进。最后,我们的实验表明,挪威海峡的不同段落可能是在∼0.5万年以来的冰川期分不同阶段形成的。这些结果凸显了在根据冰量代用指标推断冰盖历史以及根据过去冰盖范围解释气候变异时,考虑地貌形态随时间变化的重要性。
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The influence of glacial landscape evolution on Scandinavian ice-sheet dynamics and dimensions
Abstract. The Scandinavian topography and bathymetry have been shaped by ice through numerous glacial cycles in the Quaternary. In this study, we investigate how the changing morphology has influenced the Scandinavian ice sheet (SIS) in return. We use a higher-order ice-sheet model to simulate the SIS through a glacial period on three different topographies, representing different stages of glacial landscape evolution in the Quaternary. By forcing the three experiments with the same climate conditions, we isolate the effects of a changing landscape morphology on the evolution and dynamics of the ice sheet. We find that early Quaternary glaciations in Scandinavia were limited in extent and volume by the pre-glacial bathymetry until glacial deposits filled depressions in the North Sea and built out the Norwegian shelf. From middle–late Quaternary (∼0.5 Ma) the bathymetry was sufficiently filled to allow for a faster southward expansion of the ice sheet causing a relative increase in ice-sheet volume and extent. Furthermore, we show that the formation of The Norwegian Channel during recent glacial periods restricted southward ice-sheet expansion, only allowing for the ice sheet to advance into the southern North Sea close to glacial maxima. Finally, our experiments indicate that different stretches of The Norwegian Channel may have formed in distinct stages during glacial periods since ∼0.5 Ma. These results highlight the importance of accounting for changes in landscape morphology through time when inferring ice-sheet history from ice-volume proxies and when interpreting climate variability from past ice-sheet extents.
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