Massive collapse of two glaciers in western Tibet in 2016 after surge-like instability

浪涌 冰川 地质学 冰川积冰 冰川形态 岩石冰川 不稳定性 气候学 冰斗冰川 冰原 未来海平面 冰流 冰川物质平衡 冰川学 地貌学 自然地理学 冰层 构造学 古生物学 地理 海冰 机械 物理 变质岩石学
作者
Andreas Kääb,Silvan Leinss,Adrien Gilbert,Yves Bühler,Simon Gascoin,Stephen G. Evans,Perry Bartelt,Étienne Berthier,Fanny Brun,Wei‐An Chao,Daniel Farinotti,Florent Gimbert,Wanqin Guo,Christian Huggel,Jeffrey S. Kargel,G. J. Leonard,Lide Tian,Désirée Treichler,Tandong Yao
出处
期刊:Nature Geoscience [Nature Portfolio]
卷期号:11 (2): 114-120 被引量:282
标识
DOI:10.1038/s41561-017-0039-7
摘要

Surges and glacier avalanches are expressions of glacier instability, and among the most dramatic phenomena in the mountain cryosphere. Until now, the catastrophic collapse of a glacier, combining the large volume of surges and mobility of ice avalanches, has been reported only for the 2002 130 × 106 m3 detachment of Kolka Glacier (Caucasus Mountains), which has been considered a globally singular event. Here, we report on the similar detachment of the entire lower parts of two adjacent glaciers in western Tibet in July and September 2016, leading to an unprecedented pair of giant low-angle ice avalanches with volumes of 68 ± 2 × 106 m3 and 83 ± 2 × 106 m3. On the basis of satellite remote sensing, numerical modelling and field investigations, we find that the twin collapses were caused by climate- and weather-driven external forcing, acting on specific polythermal and soft-bed glacier properties. These factors converged to produce surge-like enhancement of driving stresses and massively reduced basal friction connected to subglacial water and fine-grained bed lithology, to eventually exceed collapse thresholds in resisting forces of the tongues frozen to their bed. Our findings show that large catastrophic instabilities of low-angle glaciers can happen under rare circumstances without historical precedent. Two catastrophic glacier collapse events in western Tibet in 2016 were caused by a convergence of weather and glacier-bed conditions, according to an analysis of observations and modelling.
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