Naylor Shawn, Wickert Andrew D, Edmonds Douglas A, Yanites Brian J
Center for Geospatial Data Analysis and Indiana Geological and Water Survey, Indiana University, Bloomington, IN 47405, USA.
Department of Earth and Environmental Sciences and Saint Anthony Falls Laboratory, University of Minnesota, Minneapolis, MN 55455, USA.
Sci Adv. 2021 Nov 26;7(48):eabj2938. doi: 10.1126/sciadv.abj2938. Epub 2021 Nov 24.
Subglacial landscapes, revealed in regions of recent ice-sheet retreat, provide a window into ice-sheet dynamics and interactions with evolving subglacial topography. Here, we document landscape evolution beneath the southern Laurentide Ice Sheet of North America since the end of the Pliocene, 2.6 million years (Ma) ago, by reconstructing the isostatically adjusted preglacial surface and modern bedrock topography at 250 m horizontal resolution. We use flow routing to reconstruct drainage networks and river longitudinal profiles, revealing the pattern and extent of their glacially forced reorganization. The overall mean Quaternary (2.6 Ma ago to present) erosion rate is 27 m/Ma, rising within ice-streaming corridors to 35 m/Ma (and locally reaching 400 m/Ma) and falling to 22 m/Ma in non–ice-streaming regions. Our results suggest that subglacial erosion was sufficient to lower the southern Laurentide Ice Sheet into warmer environments, thereby enhancing ablation and reducing ice-sheet extent over time.
在近期冰盖退缩的地区所展现出的冰下地貌,为了解冰盖动力学以及冰盖与不断演变的冰下地形之间的相互作用提供了一个窗口。在此,我们通过以250米的水平分辨率重建均衡调整后的冰前表面和现代基岩地形,记录了自上新世末期(260万年前)以来北美劳伦泰德冰盖南部之下的地貌演化。我们利用水流路径重建排水网络和河流纵剖面,揭示了它们受冰川作用而发生重组的模式和范围。第四纪(260万年前至今)的总体平均侵蚀速率为27米/百万年,在冰流走廊内上升至35米/百万年(局部达到400米/百万年),在非冰流区域则降至22米/百万年。我们的研究结果表明,冰下侵蚀足以使北美劳伦泰德冰盖南部降至更温暖的环境中,从而随着时间的推移增强消融并缩小冰盖范围。