Colm Ó Cofaigh , Jeremy M. Lloyd , S. Louise Callard , Catalina Gebhardt , Katharina T. Streuff , Boris Dorschel , James A. Smith , Timothy P. Lane , Stewart S.R. Jamieson , Torsten Kanzow , David H. Roberts
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Two cross-shelf bathymetric troughs, Westwind and Norske troughs, acted as pathways for offshore-flowing ice during the last glaciation but little is known about the acoustic stratigraphy, sedimentology and chronology of ice sheet retreat in the outer shelf sections of both troughs. Multibeam swath bathymetry and acoustic data from both troughs show flow parallel and flow transverse glacial landforms in the outer shelf sections of both troughs. Mega-scale glacial lineations in Westwind Trough record former streaming flow towards the shelf-edge. Grounding-zone wedges record episodic stabilisation during retreat from the shelf-edge. Sediment cores recovered subglacial tills and grounding-zone proximal sediments overlain by glacimarine sediments. The slope beyond Norske Trough is characterised by glacigenic debris flows typical of submarine slopes offshore of shelf-edge terminating palaeo-ice streams. Radiocarbon dates indicate that initial retreat of the ancestral NEGIS from the northeast Greenland shelf-edge was underway by 21.5–21.6 cal ka BP in Norske Trough and c. ≥19.0 cal ka BP in Westwind Trough. Retreat rates across the outer shelf were slow at 19–23 m a<sup>−1</sup> but increased across the inner shelf. 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引用次数: 0
摘要
本文利用新的海洋地球物理资料和放射性碳定年沉积物岩心,重建了末次冰期东北格陵兰冰流(NEGIS)的最大范围及其最初从大陆架撤退的时间。NEGIS是目前排干格陵兰冰盖(GrIS)的最大冰流,其海平面相当于1.1-1.4米。它最近经历了退缩,但毗邻大陆架上的NEGIS的长期历史仍然相对缺乏约束。在末次冰期,西风和诺斯克两个跨陆架的等深槽是离岸冰流动的通道,但对这两个槽的外陆架部分的冰原退缩的声学地层学、沉积学和年代学知之甚少。从两个槽的多波束带测深和声学数据显示,在两个槽的外大陆架部分,流动平行和流动横向的冰川地貌。西风海槽的超大尺度冰川线记录了以前流向陆架边缘的水流。在从陆架边缘撤退的过程中,接地带楔形记录了阶段性的稳定。沉积物岩心恢复了冰下碛物和冰川海洋沉积物覆盖的接地带近端沉积物。诺斯克海槽以外的斜坡以冰期碎屑流为特征,这是陆架边缘终止古冰流的海底斜坡的典型特征。放射性碳测年结果表明,在挪威海槽和西风海槽分别发生了21.5 ~ 21.6 cal ka BP和19.0 cal ka BP的初始退缩。在19 ~ 23 m a−1时,外大陆架的退缩速度较慢,而内大陆架的退缩速度较快。我们的数据首次提供了大陆架边缘在末次盛冰期期间终止于格陵兰东北部近海的冰架边缘的直接年代学支持,并表明该冰架边缘从冰架边缘撤退相对较早。
Shelf-edge glaciation offshore of northeast Greenland during the last glacial maximum and timing of initial ice-sheet retreat
This paper presents new marine geophysical data and radiocarbon dated sediment cores to reconstruct the maximum extent of the Northeast Greenland Ice Stream (NEGIS) during the last glaciation and the timing of its initial retreat from the continental shelf. The NEGIS is the largest ice stream to drain the Greenland Ice Sheet (GrIS) today, and holds a sea-level equivalent of 1.1–1.4 m. It has undergone recent retreat but the longer-term history of NEGIS on the adjoining continental shelf is still relatively poorly constrained. Two cross-shelf bathymetric troughs, Westwind and Norske troughs, acted as pathways for offshore-flowing ice during the last glaciation but little is known about the acoustic stratigraphy, sedimentology and chronology of ice sheet retreat in the outer shelf sections of both troughs. Multibeam swath bathymetry and acoustic data from both troughs show flow parallel and flow transverse glacial landforms in the outer shelf sections of both troughs. Mega-scale glacial lineations in Westwind Trough record former streaming flow towards the shelf-edge. Grounding-zone wedges record episodic stabilisation during retreat from the shelf-edge. Sediment cores recovered subglacial tills and grounding-zone proximal sediments overlain by glacimarine sediments. The slope beyond Norske Trough is characterised by glacigenic debris flows typical of submarine slopes offshore of shelf-edge terminating palaeo-ice streams. Radiocarbon dates indicate that initial retreat of the ancestral NEGIS from the northeast Greenland shelf-edge was underway by 21.5–21.6 cal ka BP in Norske Trough and c. ≥19.0 cal ka BP in Westwind Trough. Retreat rates across the outer shelf were slow at 19–23 m a−1 but increased across the inner shelf. Our data provides the first direct chronological support for a shelf-edge terminating GrIS offshore of northeast Greenland during the last glacial maximum and demonstrates this sector of the GrIS underwent relatively early retreat from the shelf-edge.
期刊介绍:
Quaternary Science Reviews caters for all aspects of Quaternary science, and includes, for example, geology, geomorphology, geography, archaeology, soil science, palaeobotany, palaeontology, palaeoclimatology and the full range of applicable dating methods. The dividing line between what constitutes the review paper and one which contains new original data is not easy to establish, so QSR also publishes papers with new data especially if these perform a review function. All the Quaternary sciences are changing rapidly and subject to re-evaluation as the pace of discovery quickens; thus the diverse but comprehensive role of Quaternary Science Reviews keeps readers abreast of the wider issues relating to new developments in the field.