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Basal freeze-on generates complex ice-sheet stratigraphy

机译:基础冻结产生复杂的冰盖地层

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Large, plume-like internal ice-layer-structures have been observed in radar images from both Antarctica and Greenland, rising from the ice-sheet base to up to half of the ice thickness. Their origins are not yet understood. Here, we simulate their genesis by basal freeze-on using numerical ice-flow modelling and analyse the transient evolution of the emerging ice-plume and the surrounding ice-layer structure as a function of both freeze-on rate and ice flux. We find good agreement between radar observations, modelled ice-plume geometry and internal layer structure, and further show that plume height relates primarily to ice-flux and only secondarily to freeze-on. An in-depth analysis, performed for Northern Greenland of observed spatial plume distribution related to ice flow, basal topography and water availability supports our findings regarding ice flux and suggests freeze-on is controlled by ascending subglacial water flow. Our results imply that widespread basal freeze-on strongly affects ice stratigraphy and consequently ice-core interpretations.
机译:在南极和格陵兰的雷达图像中都观察到了大的羽状内部冰层结构,从冰盖底部上升到冰层厚度的一半。它们的起源尚不清楚。在这里,我们使用数值冰流模型通过基础冻结来模拟它们的成因,并分析随冻结率和冰通量而变化的新兴冰块和周围冰层结构的瞬态演化。我们发现雷达观测,模拟的冰屑几何形状和内层结构之间有很好的一致性,并且进一步表明,羽流高度主要与冰流有关,其次仅与冻结有关。在格陵兰北部进行的一项深度分析,观察到的与冰流,基础地形和水利用量有关的空间羽流分布,支持了我们关于冰通量的研究结果,并表明冻结在冰河下上升的水流控制下。我们的结果表明,广泛的基础冻结对冰地层和冰芯解释有很大影响。

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