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首页> 外文期刊>Annals of Glaciology >A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers
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A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers

机译:基于网格的碎屑覆盖冰川上冰川冰崖回水模型

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摘要

Ice cliffs might be partly responsible for the high mass losses of debris-covered glaciers in the Hindu Kush-Karakoram-Himalaya region. The few existing models of cliff backwasting are point-scale models applied at few locations or assume cliffs to be planes with constant slope and aspect, a major simplification given the complex surfaces of most cliffs. We develop the first grid-based model of cliff backwasting for two cliffs on debris-covered Lirung Glacier, Nepal. The model includes an improved representation of shortwave and longwave radiation, and their interplay with the glacier topography. Shortwave radiation varies considerably across the two cliffs, mostly due to direct radiation. Diffuse radiation is the major shortwave component, as the direct component is strongly reduced by the cliffs' aspect and slope through self-shading. Incoming longwave radiation is higher than the total incoming shortwave flux, due to radiation emitted by the surrounding terrain, which is 25% of the incoming flux. Melt is highly variable in space, suggesting that simple models provide inaccurate estimates of total melt volumes. Although only representing 0.09% of the glacier tongue area, the total melt at the two cliffs over the measurement period is 2313 and 8282 m(3), 1.23% of the total melt simulated by a glacio-hydrological model for the glacier's tongue.
机译:在印度兴库什-卡拉库拉姆-喜马拉雅山地区,冰崖可能是造成大量碎片覆盖冰川损失的部分原因。现有的少数几个悬崖回水模型是点缩放模型,应用于少数位置或假定悬崖为具有恒定坡度和坡度的平面,考虑到大多数悬崖的复杂表面,这是一个主要的简化方法。我们开发了第一个基于网格的悬崖回水模型,用于尼泊尔尼泊尔碎屑覆盖的Lirung冰川上的两个悬崖。该模型包括短波和长波辐射的改进表示,以及它们与冰川地形的相互作用。短波辐射在两个悬崖之间变化很大,主要是由于直接辐射。漫射辐射是主要的短波分量,因为直接分量会通过悬崖的坡度和坡度通过自身遮挡而大大降低。由于周围地形发出的辐射占入射光通量的25%,因此入射长波辐射高于总入射短波通量。熔体在空间中的变化很大,这表明简单的模型不能提供总熔体体积的准确估算。尽管仅占冰川舌头面积的0.09%,但在整个测量期间,两个悬崖上的总融化量分别为2313和8282 m(3),是冰川水文模型为冰川舌头模拟的总融化量的1.23%。

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