The role of inland ice dynamics in controlling the variable maximum extent of the Laurentide Ice Sheet off southeastern Baffin Island

IF 2.9 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Boreas Pub Date : 2025-02-28 DOI:10.1111/bor.70000
Alexis P. Belko, Patrick Lajeunesse, Alexandre Normandeau, Pierre-Olivier Couette, Etienne Brouard
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Abstract

Reconstructions of the maximum extent and dynamics of the Laurentide Ice Sheet (LIS) during the Last Glacial Maximum (LGM) are needed for understanding how marine-based ice sheets will respond to modern climate change. The partitioning of ice masses and the location of dominant ice flows within the LIS are broadly known at regional scales, but their influence on the marine-based maximum extent of the ice sheet remains poorly constrained. Here, we provide evidence for the maximal extent of the LIS margin during the LGM in the Broughton and Merchants cross-shelf troughs off southeastern Baffin Island based on newly acquired sea floor geomorphology data. Grounding-zone wedges (GZWs), moraines and ice-stream bedforms within the Merchants cross-shelf trough delimit the maximum extent of the LIS in this sector to near the mouth of the modern fjords. Two lateral moraines, mega-scale glacial lineations (MSGLs), and iceberg scours also indicate the presence of an ice shelf extending beyond the former grounding line. In Broughton Trough, the maximum extent of the LIS is interpreted from the distribution of MSGLs and iceberg scours. The presence of sticky spots near the shelf edge may have played a role in subglacial flow and thus glacier behaviour. The difference in ice extent between the two nearby troughs is attributed to partitioning of the LIS between ice flowing from the Penny Ice Cap into Broughton Trough and ice from local alpine glaciers flowing into Merchants Trough. In addition, the presence of a dominant ice flow south of the Cumberland Peninsula may have drained ice masses of Cumberland Peninsula towards the south and caused minimal expansion in Merchants Trough to the north. These results provide a clearer understanding of the relationship between ice-sheet extent along continental margins and inland ice dynamics.

Abstract Image

内陆冰动力在控制巴芬岛东南部劳伦泰德冰盖可变最大范围中的作用
在末次盛冰期(LGM),需要重建劳伦泰德冰盖(LIS)的最大范围和动态,以了解海洋冰盖如何响应现代气候变化。在区域尺度上,冰块的划分和主导冰流的位置已广为人知,但它们对冰盖海洋最大范围的影响仍知之甚少。本文基于新获得的海底地貌数据,提供了巴芬岛东南部Broughton和Merchants交叉陆架槽在LGM期间LIS边缘最大范围的证据。在Merchants交叉陆架槽内的搁浅带楔形物(GZWs)、冰碛和冰流床将该区域的最大范围划分为靠近现代峡湾口的区域。两个侧冰碛、超大规模冰川线(MSGLs)和冰山冲刷也表明存在一个延伸到前接地线之外的冰架。在布劳顿海槽,通过MSGLs和冰山冲刷的分布来解释LIS的最大范围。冰架边缘附近粘点的存在可能对冰下流动和冰川行为起了作用。附近两个冰槽之间冰面积的差异归因于从Penny冰帽流入布劳顿槽的冰和从当地高山冰川流入Merchants槽的冰之间的分裂。此外,坎伯兰半岛南部的主导冰流的存在可能使坎伯兰半岛的冰块向南流失,并导致商人槽向北的最小扩张。这些结果对大陆边缘冰盖范围与内陆冰动力之间的关系提供了更清晰的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Boreas
Boreas 地学-地球科学综合
CiteScore
5.90
自引率
4.50%
发文量
36
审稿时长
>12 weeks
期刊介绍: Boreas has been published since 1972. Articles of wide international interest from all branches of Quaternary research are published. Biological as well as non-biological aspects of the Quaternary environment, in both glaciated and non-glaciated areas, are dealt with: Climate, shore displacement, glacial features, landforms, sediments, organisms and their habitat, and stratigraphical and chronological relationships. Anticipated international interest, at least within a continent or a considerable part of it, is a main criterion for the acceptance of papers. Besides articles, short items like discussion contributions and book reviews are published.
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