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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >High-resolution sub-ice-shelf seafloor records of twentieth century ungrounding and retreat of Pine Island Glacier, West Antarctica
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High-resolution sub-ice-shelf seafloor records of twentieth century ungrounding and retreat of Pine Island Glacier, West Antarctica

机译:二十世纪的高分辨率亚冰架海底记录未接地和撤退的松树岛冰川,西南极洲

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Pine Island Glacier Ice Shelf (PIGIS) has been thinning rapidly over recent decades, resulting in a progressive drawdown of the inland ice and an upstream migration of the grounding line. The resultant ice loss from Pine Island Glacier (PIG) and its neighboring ice streams presently contributes an estimated approximate to 10% to global sea level rise, motivating efforts to constrain better the rate of future ice retreat. One route toward gaining a better understanding of the processes required to underpin physically based projections is provided by examining assemblages of landforms and sediment exposed over recent decades by the ongoing ungrounding of PIG. Here we present high-resolution bathymetry and sub-bottom-profiler data acquired by autonomous underwater vehicle (AUV) surveys beneath PIGIS in 2009 and 2014, respectively. We identify landforms and sediments associated with grounded ice flow, proglacial and subglacial sediment transport, overprinting of lightly grounded ice-shelf keels, and stepwise grounding line retreat. The location of a submarine ridge (Jenkins Ridge) coincides with a transition from exposed crystalline bedrock to abundant sediment cover potentially linked to a thick sedimentary basin extending upstream of the modern grounding line. The capability of acquiring high-resolution data from AUV platforms enables observations of landforms and understanding of processes on a scale that is not possible in standard offshore geophysical surveys.
机译:近几十年来,松树岛冰川冰架(仔猪)一直在迅速变薄,导致内陆冰的渐进式和接地线的上游迁移。从松树岛冰川(猪)及其邻近的冰流的所得到的冰损估计估计到全球海平面的10%估计近似,激励努力约束未来冰撤退的速度。通过在近几十年来通过持续的猪来检查近几十年来的地貌和沉积物,提供了一种获得更好地理解基于物理基于基于物理投影所需的过程的一条路线。在这里,我们在2009年和2014年,我们呈现了由自主水下车辆(AUV)调查中获取的高分辨率沐浴族和次突发仪数据。我们识别与接地冰流,平原和沉积物运输相关的地形和沉积物,套印轻微接地的冰架龙骨,逐步接地线撤退。潜水艇脊(Jenkins Ridge)的位置与从暴露的结晶基岩到潜在连接到延伸的现代接地线上游的厚沉积盆地的丰富沉积物覆盖的过渡。获取AUV平台的高分辨率数据的能力使得在标准海上地球物理调查中不可能的范围内的地貌和对过程的理解。

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