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Boundary conditions of an active West Antarctic subglacial lake: implications for storage of water beneath the ice sheet

机译:活跃的南极冰川下西湖的边界条件:对冰盖下水储量的影响

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Repeat-pass ICESat altimetry has revealed 124 discrete surface height changes across the Antarctic Ice Sheet, interpreted to be caused by subglacial lake discharges (surface lowering) and inputs (surface uplift). Few of these active lakes have been confirmed by radio-echo sounding (RES) despite several attempts (notable exceptions are Lake Whillans and three in the Adventure Subglacial Trench). Here we present targeted RES and radar altimeter data from an "active lake" location within the upstream Institute Ice Stream, into which at least 0.12 kmsup3/sup of water was previously calculated to have flowed between October 2003 and February 2008. We use a series of transects to establish an accurate depiction of the influences of bed topography and ice surface elevation on water storage potential. The location of surface height change is downstream of a subglacial hill on the flank of a distinct topographic hollow, where RES reveals no obvious evidence for deep ( 10 m) water. The regional hydropotential reveals a sink coincident with the surface change, however. Governed by the location of the hydrological sink, basal water will likely "drape" over topography in a manner dissimilar to subglacial lakes where flat strong specular RES reflections are measured. The inability of RES to detect the active lake means that more of the Antarctic ice sheet bed may contain stored water than is currently appreciated. Variation in ice surface elevation data sets leads to significant alteration in calculations of the local flow of basal water indicating the value of, and need for, high-resolution altimetry data in both space and time to establish and characterise subglacial hydrological processes.
机译:重复通过的ICESat高空测验揭示了南极冰盖上124个离散的表面高度变化,这被解释为是由冰河湖下的排放(表面下降)和输入(表面上升)引起的。尽管进行了几次尝试,但很少有人通过无线电回声(RES)确认过这些活跃的湖泊(值得注意的例外是惠兰斯湖和冒险冰川下的海沟中的三个)。在这里,我们提供了来自上游研究所冰流中“活动湖”位置的目标RES和雷达高度计数据,先前计算得出至少有0.12 km 3 的水在2003年10月至2月之间流入2008年。我们使用一系列样带来准确描述河床地形和冰面高度对蓄水潜力的影响。表面高度变化的位置在一个明显的地形凹陷侧面的冰川下丘陵的下游,RES并没有显示深水(> 10 m)的明显证据。然而,区域水势揭示了与表面变化一致的汇。受水文汇位置的控制,基础水可能会以与测量冰川平坦RES反射的冰川湖不同的方式“覆盖”地形。 RES无法检测到活跃的湖泊,这意味着南极冰盖床中可能包含比目前更多的水。冰面高程数据集的变化导致基础水局部流量的计算发生重大变化,从而表明了在空间和时间上建立和表征冰川下水文过程的高分辨率测高数据的价值,并需要高分辨率测高数据。

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