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Actively evolving subglacial conduits and eskers initiate ice shelf channels at an Antarctic grounding line

机译:积极演化的冰下导管和增尘器在南极接地线上启动了冰架通道

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摘要

Ice-shelf channels are long curvilinear tracts of thin ice found on Antarctic ice shelves. Many of them originate near the grounding line, but their formation mechanisms remain poorly understood. Here we use ice-penetrating radar data from Roi Baudouin Ice Shelf, East Antarctica, to infer that the morphology of several ice-shelf channels is seeded upstream of the grounding line by large basal obstacles indenting the ice from below. We interpret each obstacle as an esker ridge formed from sediments deposited by subglacial water conduits, and calculate that the eskers' size grows towards the grounding line where deposition rates are maximum. Relict features on the shelf indicate that these linked systems of subglacial conduits and ice-shelf channels have been changing over the past few centuries. Because ice-shelf channels are loci where intense melting occurs to thin an ice shelf, these findings expose a novel link between subglacial drainage, sedimentation and ice-shelf stability.
机译:冰架通道是在南极冰架上发现的长长的曲线形薄冰。它们中的许多都起源于接地线附近,但其形成机理仍知之甚少。在这里,我们使用来自南极东部Roi Baudouin冰架的穿透冰的雷达数据来推断,几个冰架通道的形态是由大的基础障碍物(从下方压入冰层)播种在接地线的上游。我们将每个障碍物解释为由冰河下水管道沉积物形成的聚积脊,并计算出聚积的大小朝着沉积速率最大的接地线增长。架子上的遗物特征表明,这些相连的冰川下导管和冰架通道系统在过去的几个世纪中一直在变化。由于冰架通道是发生剧烈融化以使冰架变薄的位点,因此这些发现揭示了冰川下排水,沉积和冰架稳定性之间的新颖联系。

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