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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >The evolution of brittle and ductile structures at the surface of a partly debris-covered, rapidly thinning and slowly moving glacier in 1998-2012 (Pasterze Glacier, Austria)
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The evolution of brittle and ductile structures at the surface of a partly debris-covered, rapidly thinning and slowly moving glacier in 1998-2012 (Pasterze Glacier, Austria)

机译:1998 - 2012年部分碎片覆盖,快速变薄和缓慢移动冰川表面的脆性和韧性结构的演变(Pasterze Glacier,奥地利)

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Many glaciers in alpine regions are currently rapidly receding and thinning at historically unobserved rates causing changes in the velocity field and in normal and shear stresses affecting the surface expression of structures within the ice. We studied the distribution of brittle and ductile structures at the surface of Pasterze Glacier during a 14-year period by analysing orthophotos and digital elevation models of five stages (1998, 2003, 2006, 2009 and 2012). A structural glaciological mapping key was applied. Normal faults, strike-slip faults, en echelon structures (systematic stepping of fractures), thrust faults, and band ogives were distinguished. Results indicate substantial deceleration and glacier thinning in 1998-2012. Glacier thinning was not homogenous over time related to the uneven distribution of supraglacial debris causing differential ablation or the selective ablation effects of subglacial water channels. Peculiar supraglacial features observed are circular collapse structures with concentric crevasses which form when the ice between the surface and the roof of water channels decreases. The total length of brittle structures increased from 38.4km to 56.9km whereas the extent of the glacier tongue decreased by 25%. The fracture density doubled from 0.009 to 0.018m/m(2). Areas of the glacier tongue which were up to 100m away from the nearest brittle structure increased by 16%. The visual appearance of thrust faults shifted upglacier due to decreasing glacier velocity causing horizontal shortening or due to exhumation of faults that did not previously extend to the surface. A large number of brittle structures are progressively independent from glacier motion. Our study suggests that glacier tongues which are in a state of rapid decay and thinning are prone to fracturing due to normal fault formation and glacier disintegration. Water further increases ablation rates substantially if rather large amounts drain through supra-, en- or subglacial water
机译:在高山地区的许多冰川目前在历史上不受欢迎的速率在历史上迅速稀释,导致速度场的变化以及影响冰中结构表面表达的正常和剪切应力。通过分析五个阶段的正交和数字海拔模型(1998,2003,2006,2009和2012),研究了在14年期间在14年期间的脆性和韧性结构的分布。应用了结构冰川缩放键。区分正常故障,防滑故障,en梯队结构(系统踩踏的骨折),推力故障和乐队ogives。结果在1998 - 2012年表明了大量减速和冰川稀疏。冰川变薄随着时间的推移而不是同时均匀,与超透析碎片的不均匀分布引起差异消融或底裂水通道的选择性烧蚀效果。观察到的特殊的超透视特征是具有同心裂缝的圆形塌陷结构,当水道的表面和屋顶之间的冰减小时形成的同心裂缝。脆性结构的总长度从38.4km增加到56.9km,而冰川舌的程度降低了25%。断裂密度从0.009倍至0.018m / m(2)加倍。冰川舌头的区域距离最近的脆性结构高达100米,增加了16%。由于降低冰川速度导致水平缩短或由于前面没有延伸到表面的故障,引起的推力故障的视觉出现偏离闪光灯。大量的脆性结构逐渐独立于冰川运动。我们的研究表明,由于正常的故障形成和冰川崩解,冰川舌在快速衰减和变薄状态下容易破裂。水进一步增加消融率,如果相当大量的量通过同上,或底裂水排出

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