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Sediment features at the grounding zone and beneath Ekström Ice Shelf, East Antarctica, imaged using on-ice vibroseis

机译:沉积物在接地区和东南极洲Ekström冰架下方的特征,使用冰上可控震源成像

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摘要

The grounding zone, where an ice sheet becomes a floating ice shelf, is known to be a key threshold region for ice flow and stability. A better understanding of ice dynamics and sediment transport across such zones will improve knowledge about contemporary and palaeo ice flow, as well as past ice extent. Here we present a set of seismic reflection profiles crossing the grounding zone and continuing to the shelf edge of Ekström Ice Shelf, East Antarctica. Using an on-ice vibroseis source combined with a snowstreamer we have imaged a range of sub-glacial and sub-shelf sedimentary and geomorphological features; from layered sediment deposits to elongated flow features. The acoustic properties of the features as well as their morphology allow us to draw conclusions as to their material properties and origin. These results will eventually be integrated with numerical models of ice dynamics to quantify past and present interactions between ice and the solid Earth in East Antarctica; leading to a better understanding of future contributions of this region to sea-level rise.
机译:冰原变成浮动冰架的接地区域是冰流动和稳定性的关键阈值区域。更好地了解跨这些区域的冰动力学和沉积物传输将提高对当代和古冰流以及过去冰范围的了解。在这里,我们展示了一组穿过地面区域并延伸到东南极洲Ekström冰架的架子边缘的地震反射剖面。利用冰上的震动源与集雪机相结合,我们拍摄了一系列冰下和亚陆架的沉积和地貌特征。从分层的沉积物到细长的流动特征。这些特征的声学特性及其形态可以使我们得出有关其材料特性和起源的结论。这些结果最终将与冰动力学数值模型整合,以量化南极东部地区冰与固体地球之间过去和现在的相互作用;从而更好地了解该地区对海平面上升的未来贡献。

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