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Ice stream motion facilitated by a shallow-deforming and accreting bed

机译:浅层变形和积积床促进冰流运动

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摘要

Ice streams drain large portions of ice sheets and play a fundamental role in governing their response to atmospheric and oceanic forcing, with implications for sea-level change. The mechanisms that generate ice stream flow remain elusive. Basal sliding and/or bed deformation have been hypothesized, but ice stream beds are largely inaccessible. Here we present a comprehensive, multi-scale study of the internal structure of mega-scale glacial lineations (MSGLs) formed at the bed of a palaeo ice stream. Analyses were undertaken at macro- and microscales, using multiple techniques including X-ray tomography, thin sections and ground penetrating radar (GPR) acquisitions. Results reveal homogeneity in stratigraphy, kinematics, granulometry and petrography. The consistency of the physical and geological properties demonstrates a continuously accreting, shallow-deforming, bed and invariant basal conditions. This implies that ice stream basal motion on soft sediment beds during MSGL formation is accommodated by plastic deformation, facilitated by continuous sediment supply and an inefficient drainage system.
机译:冰河流失了大量的冰盖,并在控制其对大气和海洋强迫的响应中起着根本性的作用,对海平面变化具有影响。产生冰流的机制仍然难以捉摸。已经假定了基础滑动和/或床变形,但是冰流床在很大程度上是不可及的。在这里,我们介绍了在古冰河床层形成的巨型冰川系(MSGL)内部结构的全面,多尺度研究。使用多种技术,包括X射线断层扫描,薄片和探地雷达(GPR)采集,在宏观和微观尺度上进行了分析。结果显示在地层学,运动学,粒度分析和岩石学方面均一。物理和地质特性的一致性表明,岩浆不断地堆积,变形,床层和基础条件不变。这意味着在MSGL形成过程中,软沉积床上的冰流基础运动是通过塑性变形来适应的,这是由于连续的沉积物供应和低效的排水系统造成的。

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