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Spatial stability of Ice Stream D and its tributaries, West Antarctica, revealed by radio-echo sounding and interferometry

机译:无线电回波测深和干涉法揭示了冰流D及其支流西极南极的空间稳定性

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摘要

It has been shown recently that ice streams are fed by fast-flowing tributaries occupying well-defined subglacial troughs and with shared source areas. Here, ice-penetrating radio-echo sounding (RES) data are analyzed in conjunction with ice surface velocities derived from interferometric synthetic aperture radar (InSAR), to determine the englacial properties of tributaries feeding Ice Stream D, West Antarctica. All of Ice Stream D's tributaries are coincident with "buckled" internal ice-sheet layers, most probably deformed by the processes responsible for enhanced ice flow. Between the tributaries well-preserved internal layers occur. The data reveal that no lateral migration of the ice-stream tributaries has occurred recently. This is consistent with thermomechanical ice-flow modelling, which indicates that the flow of Ice Stream D is controlled by a subglacial trough and is unaffected by changes to the flow of neighbouring Ice Stream C.
机译:最近显示,冰流是由快速流动的支流供给的,这些支流占据了明确界定的冰河谷槽底下并且具有共同的源区。在这里,结合透过干涉式合成孔径雷达(InSAR)得出的冰面速度,分析了穿透冰的无线电回声(RES)数据,以确定向南极西部冰河D注入的支流的冰川性质。 Ice Stream D的所有支流都与“弯曲的”内部冰原层相吻合,最有可能因负责增强冰流量的过程而变形。在支流之间,存在保存完好的内部层。数据表明,最近没有发生冰流支流的横向迁移。这与热机械冰流模拟是一致的,该模型表明冰流D的流动受冰河槽控制,不受相邻冰流C的流动变化的影响。

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