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A comparison of glacier melt on debris-covered glaciers in the northern and southern Caucasus

机译:高加索北部和南部冰川覆盖的碎片覆盖的冰川的比较

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The glacier coverage in the Caucasus Mountains underwent considerable changes during the last decades. In some regions, the observed reduction in glacier area is comparable to those in the European Alps and the extent of supra-glacial debris increased on many glaciers. Only a few glaciers in the Caucasus are monitored on a regular basis, while for most areas no continuous field measurements are available. In this study, regional differences of the conditions for glacier melt with a special focus on debris covered glacier tongues in the well-studied Adyl-su basin on the northern slope of the Caucasus Mountains (Russia) is compared with the Zopkhito basin which has similar characteristics but is located on the southern slope in Georgia. The paper focuses on the effect of supra-glacial debris cover on glacier summer melt. There are systematic differences in the distribution and increase of the debris cover on the glaciers of the two basins. In the Adyl-su basin an extensive debris cover on the glacier tongues is common, however, only those glacier tongues that are positioned at the lowest elevations in the Zopkhito basin show a considerable extent of supra-glacial debris. The observed increase in debris cover is considerably stronger in the north. Field experiments show that thermal resistance of the debris cover in both basins is somewhat higher than in other glaciated regions of the world, but there is also a significant difference between the two regions. A simple ablation model accounting for the effect of debris cover on ice melt shows that melt rates are considerably higher in the northern basin despite a wider debris distribution. This difference between the two regions can be attributed to different meteorological conditions which are characterised by more frequent cloud cover and precipitation in the south. Furthermore ablation is strongly influenced by the occurrence of supra-glacial debris cover in both basins, reducing the total amount of melt on the studied glaciers by about 25 %. This effect mitigates glacier retreat in the lower sectors of the ablation zones considerably. The sensitivity to moderate changes in the debris cover, however, is rather small which implies only gradual changes of the melt regime due to debris cover dynamics during the near future.
机译:在过去的几十年中,高加索山脉的冰川覆盖范围发生了巨大变化。在某些地区,观测到的冰川面积减少与欧洲阿尔卑斯山相当,而且在许多冰川上,超冰川碎片的程度有所增加。定期对高加索地区的几座冰川进行定期监测,而对于大多数地区,则无法进行连续的野外测量。在这项研究中,比较了高加索山脉(俄罗斯)北坡经过精心研究的阿迪尔苏盆地的冰川融化条件的区域差异,特别是被碎屑覆盖的冰川舌头。特色,但位于佐治亚州的南坡。本文重点研究了冰川上碎屑覆盖对夏季冰川融化的影响。在两个盆地的冰川上,碎屑的分布和增加存在系统的差异。在Adyl-su盆地中,冰川舌上普遍有大量的碎屑覆盖,但是,只有那些位于Zopkhito盆地最低海拔的冰川舌才显示出相当程度的冰川上碎屑。在北部,观察到的碎片覆盖增加明显更大。野外实验表明,两个盆地中的碎屑覆盖层的热阻都比世界上其他冰川地区的要高一些,但两个地区之间也存在显着差异。一个简单的消融模型说明了残骸覆盖对冰融化的影响,结果表明,尽管残骸分布较宽,北部盆地的融化速率仍然较高。两个地区之间的这种差异可以归因于不同的气象条件,其特征是南部的云层覆盖和降水更加频繁。此外,消融受到两个盆地中超冰川碎屑覆盖物的影响,使研究冰川的融化总量减少了约25%。这种效果大大减轻了消融区下部的冰川退缩。然而,对于碎片覆盖的适度变化的敏感性相当小,这意味着由于碎片覆盖在不久的将来的动态,熔融状态仅会逐渐变化。

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