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Quantifying volume loss from ice cliffs on debris-covered glaciers using high-resolution terrestrial and aerial photogrammetry

机译:使用高分辨率地面和空中摄影测量量量量量量从碎片覆盖冰川上的冰峭壁

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Mass losses originating from supraglacial ice cliffs at the lower tongues of debris-covered glaciers are a potentially large component of the mass balance, but have rarely been quantified. In this study, we develop a method to estimate ice cliff volume losses based on high-resolution topographic data derived from terrestrial and aerial photogrammetry. We apply our method to six cliffs monitored in May and October 2013 and 2014 using four different topographic datasets collected over the debris-covered Lirung Glacier of the Nepalese Himalayas. During the monsoon, the cliff mean backwasting rate was relatively consistent in 2013 (3.8 +/- 0.3 cm w.e. d(-1)) and more heterogeneous among cliffs in 2014 (3.1 +/- 0.7 cm w.e. d(-1)), and the geometric variations between cliffs are larger. Their mean backwasting rate is significantly lower in winter (October 2013-May 2014), at 1.0 +/- 0.3 cm w.e. d(-1). These results are consistent with estimates of cliff ablation from an energy-balance model developed in a previous study. The ice cliffs lose mass at rates six times higher than estimates of glacier-wide melt under debris, which seems to confirm that ice cliffs provide a large contribution to total glacier melt.
机译:源自碎片覆盖冰川较低舌头的超透冰悬崖的大规模损失是质量平衡的潜在大部分,但很少量化。在这项研究中,我们开发了一种基于从地面和空中摄影测量的高分辨率地形数据来估计冰峭壁损失的方法。我们将我们的方法应用于2013年5月和2014年10月监控的六个悬崖,使用了在尼泊尔喜马拉雅山的杂物覆盖的莱隆冰川上收集的四个不同的地形数据集。在季风期间,2013年悬崖的平均值水含量相对一致(3.8 +/- 0.3cm,2014年悬崖中的更异味(3.1 +/- 0.7cm We d(-1)),悬崖之间的几何变化更大。冬季(2014年10月至2014年5月),他们的平均值速度较低,在1.0 +/- 0.3cm w.e. D(-1)。这些结果与先前研究中开发的能量平衡模型的悬崖消融估计一致。冰悬崖比碎片下冰川般宽熔体的估计值高六倍,这似乎证实了冰悬崖对全冰川融化的巨大贡献。

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