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首页> 外文期刊>Journal of Glaciology >Assessing the summer water budget of a moulin basin in the Sermeq Avannarleq ablation region, Greenland ice sheet
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Assessing the summer water budget of a moulin basin in the Sermeq Avannarleq ablation region, Greenland ice sheet

机译:评估格陵兰冰盖Sermeq Avannarleq消融地区红磨坊盆地的夏季水预算

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摘要

We provide an assessment of the supraglacial water budget of a moulin basin on the western margin of the Greenland ice sheet for 15 days in August 2009. Meltwater production, the dominant input term to the 1.14 +/- 0.06 km(2) basin, was determined from in situ ablation measurements. The dominant water-output terms from the basin, accounting for 52% and 48% of output, respectively, were moulin discharge and drainage into crevasses. Moulin discharge exhibits large diurnal variability (0.017-0.54 m(3) s(-1)) with a distinct late-afternoon peak at 16:45 local time. This lags peak meltwater production by similar to 2.8 +/- 4.2 hours. An Extreme Ice Survey time-lapse photography sequence complements the observations of moulin discharge. We infer, from in situ observations of moulin geometry, previously published borehole water heights and estimates of the temporal lag between meltwater production and observed local ice surface uplift ('jacking'), that the transfer of surface meltwater to the englacial water table via moulins is nearly instantaneous (<30 min). We employ a simple crevasse mass-balance model to demonstrate that crevasse drainage could significantly dampen the surface meltwater fluctuations reaching the englacial system in comparison to moulin discharge. Thus, unlike crevasses, moulins propagate meltwater pulses to the englacial system that are capable of overwhelming subglacial transmission capacity, resulting in enhanced basal sliding.
机译:我们提供了2009年8月为期15天的格陵兰冰盖西缘红磨坊流域上游水预算的评估。融水产量(1.14 +/- 0.06 km(2)流域的主要输入项)为由原位消融测量确定。流域的主要出水量分别是红磨坊的排水量和向裂缝的排水量,分别占总产量的52%和48%。红磨坊放电表现出较大的昼夜变化(0.017-0.54 m(3)s(-1)),在当地时间16:45有一个明显的下午高峰。这使峰值融水产量滞后了约2.8 +/- 4.2小时。极端冰雪测量延时摄影序列是对红磨坊出没的观察的补充。我们从对红磨坊几何形状的原地观测中推断出先前公布的井眼水高以及对融水产量和观测到的局部冰面隆起(“顶升”)之间的时间滞后的估计,即通过红磨坊将地表融化水转移到了冰川水位几乎是瞬时的(<30分钟)。我们采用一个简单的裂隙质量平衡模型来证明,与红磨坊排放相比,裂隙排水能够显着抑制到达冰川系统的表面融水波动。因此,与裂隙不同,红磨坊将融化的水脉冲传播到冰川系统,该系统能够压倒冰川下的传输能力,从而增强了基底滑动。

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