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首页> 外文期刊>Geological Society of America Bulletin >Large-scale reorganization and sedimentation of terrestrial ice streams during late Wisconsinan Laurentide Ice Sheet deglaciation
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Large-scale reorganization and sedimentation of terrestrial ice streams during late Wisconsinan Laurentide Ice Sheet deglaciation

机译:威斯康星州洛朗底冰盖冰期后期冰消期间陆地冰流的大规模重组和沉积

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摘要

Glacial geomorphological mapping of Shuttle Radar Topography Mission (SRTM) data from the western Canadian Prairies demonstrates that during the last (late Wisconsinan) deglaciation of the Laurentide Ice Sheet terrestrial ice streams underwent a major reorganization of their flow configuration. This reorganization involved a 90° shift in flow direction and was accompanied by a corresponding increase in the influence of topography on streaming flow. Ice streams included both topographically confined and "pure" ice streams that flowed independent of topography. Streaming flow is recorded by suites of highly elongate (>60 km long) sub-glacial bedforms, bounded sharply at their lateral margins by prominent moraines. Initial streaming flow was unconfined by topography but was replaced progressively, and crosscut, by younger topographically confined flows. Flow reorganization is inferred to have been caused by temporal and spatial variations in the interaction between frozen and thawed bed conditions, with thinning and shutdown of one ice stream ultimately triggering initiation of others. This highlights the role of internal glaciodynamically driven reorganization in triggering streaming flow within large ice sheets and shows that large-scale flow reorganization can occur over the time scale of a single deglaciation in terrestrial ice streams.
机译:来自加拿大西部大草原的航天飞机雷达地形任务(SRTM)数据的冰川地貌图表明,在洛朗特冰盖的最后一次(威斯康星州晚期)冰消作用期间,陆地冰流经历了其流动结构的重大重组。这种重组涉及流向90°的偏移,并伴随着地形对流向的影响相应增加。冰流包括不受地形限制的地形限制和“纯”冰流。一系列高度拉长(> 60 km长)的亚冰河床形记录了水流,这些河床在其侧缘处被明显的冰rain锐利地界定。最初的流没有受到地形的限制,但逐渐被年轻的受地形限制的流所替代,并被横切。据推测,流动重组是由于冰冻和融化床层条件之间相互作用的时间和空间变化引起的,一种冰流的稀疏和关闭最终触发了另一种冰流的引发。这突显了内部冰川动力驱动的重组在触发大冰盖内的水流中的作用,并表明,在陆地冰流中一次冰消作用的时间尺度上,可能发生大规模的水流重组。

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