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Meltwater storage in low-density near-surface bare ice in the Greenland ice sheet ablation zone

机译:格陵兰冰盖消融区低密度近地表裸冰中的融水储存

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We document the density and hydrologic properties of bare, ablating ice in a mid-elevation (1215 m a.s.l.) supraglacial internally drained catchment in the Kangerlussuaq sector of the western Greenland ice sheet. We find low-density (0.43–0.91 g cmsup?3/sup, μ?=?0.69 g cmsup?3/sup) ice to at least 1.1 m depth below the ice sheet surface. This near-surface, low-density ice consists of alternating layers of water-saturated, porous ice and clear solid ice lenses, overlain by a thin (?3/sup, μ?=?0.45 g cmsup?3/sup) unsaturated weathering crust. Ice density data from 10 shallow (0.9–1.1 m) ice cores along an 800 m transect suggest an average 14–18 cm of specific meltwater storage within this low-density ice. Water saturation of this ice is confirmed through measurable water levels (1–29 cm above hole bottoms, μ?=?10 cm) in 84 % of cryoconite holes and rapid refilling of 83 % of 1 m drilled holes sampled along the transect. These findings are consistent with descriptions of shallow, depth-limited aquifers on the weathered surface of glaciers worldwide and confirm the potential for substantial transient meltwater storage within porous low-density ice on the Greenland ice sheet ablation zone surface. A conservative estimate for the ~ 63 kmsup2/sup supraglacial catchment yields 0.009–0.012 kmsup3/sup of liquid meltwater storage in near-surface, porous ice. Further work is required to determine if these findings are representative of broader areas of the Greenland ice sheet ablation zone, and to assess the implications for sub-seasonal mass balance processes, surface lowering observations from airborne and satellite altimetry, and supraglacial runoff processes.
机译:我们记录了格陵兰西部冰盖的Kangerlussuaq断层中部超冰川内部流失集水区中空(1215 m a.s.l.)裸露,消融冰的密度和水文特性。我们发现低密度冰(0.43–0.91 g cm ?3 ,μ?=?0.69 g cm ?3 )到冰盖表面以下至少1.1 m的深度。这种近表面的低密度冰由水饱和的多孔冰和透明的固态冰晶交替层组成,上面覆盖着一层薄薄的(?3 ,μ?=?0.45 g cm ?3 )不饱和风化壳。沿着800 m横断面的10个浅层(0.9–1.1 m)冰芯的冰密度数据表明,在这种低密度冰层中平均有14–18 cm的特定融水存储。该冰的水饱和度通过可测量的水位(孔底部上方1–29 cm,μ?=?10 cm)在84%的冰孔洞中以及沿横断面采样的1 m钻孔中的83%快速填充而得到确认。这些发现与对全球冰川风化表面上的浅层,深度有限的含水层的描述一致,并证实了格陵兰冰盖消融区表面的多孔低密度冰中大量瞬态熔体水的存储潜力。对近地表多孔冰中液态融水储藏的〜63 km 2 冰川上流域产量的保守估计为0.009-0.012 km 3 。需要做进一步的工作来确定这些发现是否代表了格陵兰冰盖消融区的更广阔的区域,并评估了对次季节质量平衡过程,机载和卫星测高仪的地表低空观测以及冰川期径流过程的影响。

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