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Assessing controls on mass budget and surface velocity variations of glaciers in Western Himalaya

机译:评估喜马拉雅西部冰川的质量预算和表面速度变化的控制

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摘要

This study analyses spatially resolved estimates of mass budget and surface velocity of glaciers in the Zanskar Basin of Western Himalaya in the context of varying debris cover, glacier hypsometry and orientation. The regional glacier mass budget for the period of 1999–2014 is −0.38 ± 0.09 m w.e./a. Individual mass budgets of 10 major glaciers in the study area varied between −0.13 ± 0.07 and −0.66 ± 0.09 m w.e./a. Elevation changes on debris-covered ice are considerably less negative than over clean ice. At the same time, glaciers having >20% of their area covered by debris have more negative glacier-wide mass budgets than those with <20% debris cover. This paradox is likely explained by the comparatively larger ablation area of extensively debris-covered glaciers compared to clean-ice glaciers, as indicated by hypsometric analysis. Additionally, surface velocities computed for the 2013–14 period reveal near stagnant debris-covered snouts but dynamically active main trunks, with maximum recorded velocity of individual glaciers ranging between ~50 ± 5.58 and ~90 ± 5.58 m/a. The stagnant debris-covered extent, which varies from glacier-to-glacier, are also characterized by ice cliffs and melt ponds that appreciably increase the overall surface melting of debris-covered areas.
机译:这项研究分析了西喜马拉雅山赞斯喀尔盆地在不同的碎屑覆盖率,冰川测压和方向变化的情况下对空间质量估计和冰川表面速度的空间分辨估计。 1999-2014年期间的区域冰川整体预算为-0.38±0.09立方米w.e./a。研究区10个主要冰川的个体总预算在-0.13±0.07和-0.66±0.09 m w.e./a之间。覆盖冰屑的冰块的仰角变化比清洁冰块的仰角变化要小得多。同时,冰川覆盖范围大于20%的冰川比冰川覆盖小于20%的冰川具有更大的负冰川范围总体预算。高压测量分析表明,与清洁冰河相比,大面积覆盖冰屑的冰川的消融面积更大,可以解释这种悖论。此外,2013–14年期间计算的地表速度显示出接近停滞的碎屑覆盖的口鼻部,但动态活跃的主干,单个冰川的最大记录速度介于〜50±85.58和〜90±5.58 m / a之间。停滞的残渣覆盖程度随冰川的变化而变化,其特征还在于冰壁和融化的池塘明显增加了残渣覆盖区域的整体表面融化。

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