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Rock glaciers on the run - understanding rock glacier landform evolution and recent changes from numerical flow modeling

机译:运行中的冰川-了解冰川的地貌演化和数值流模型的最新变化

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摘要

The word rockglacier is not in any dictionary and is rarely used in the literature. The proper spelling is as two words, which we therefore prefer. Rock glaciers are landforms that form as a result of creeping mountain permafrost which have received considerable attention concerning their dynamical and thermal changes. Observed changes in rock glacier motion on seasonal to decadal timescales have been linked to ground temperature variations and related changes in landform geometries interpreted as signs of degradation due to climate warming. Despite the extensive kinematic and thermal monitoring of these creeping permafrost landforms, our understanding of the controlling factors remains limited and lacks robust quantitative models of rock glacier evolution in relation to their environmental setting.\udHere, we use a holistic approach to analyze the current and long-term dynamical development of two rock glaciers in the Swiss Alps. Site-specific sedimentation and ice generation rates are linked with an adapted numerical flow model for rock glaciers that couples the process chain from material deposition to rock glacier flow in order to reproduce observed rock glacier geometries and their general dynamics. Modeling experiments exploring the impact of variations in rock glacier temperature and sediment–ice supply show that these forcing processes are not sufficient to explain the currently observed short-term geometrical changes derived from multitemporal digital terrain models at the two different rock glaciers. The modeling also shows that rock glacier thickness is dominantly controlled by slope and rheology while the advance rates are mostly constrained by rates of sediment–ice supply. Furthermore, timescales of dynamical adjustment are found to be strongly linked to creep velocity. Overall, we provide a useful modeling framework for a better understanding of the dynamical response and morphological changes of rock glaciers to changes in external forcing.
机译:Rockglacier这个词在任何词典中都没有,在文献中很少使用。正确的拼写是两个单词,因此我们首选。岩石冰川是由于山地多年冻土蠕动而形成的地貌,在其动力和热力变化方面受到了广泛的关注。从季节到十年的时间尺度上观察到的岩石冰川运动的变化与地面温度的变化有关,地貌的相关变化也被解释为由于气候变暖而退化的迹象。尽管对这些蠕变的多年冻土地貌进行了广泛的运动学和热学监测,但我们对控制因素的理解仍然有限,并且缺乏与环境相关的岩石冰川演化定量模型。\ ud此处,我们采用整体方法来分析当前和未来瑞士阿尔卑斯山的两个岩石冰川的长期动态发展。特定地点的沉积和生冰速率与适用于岩石冰川的数值流模型相关联,该模型将从物质沉积到岩石冰川流的过程链耦合在一起,以重现观察到的岩石冰川的几何形状及其一般动力学。探索岩石冰川温度和沉积物-冰供应变化影响的模拟实验表明,这些强迫过程不足以解释当前观察到的来自两个不同冰川的多时相数字地形模型的短期几何变化。该模型还表明,岩石冰川的厚度主要受坡度和流变学的控制,而前进速度主要受沉积物-冰的供给速度的限制。此外,发现动态调整的时标与蠕变速度密切相关。总体而言,我们提供了一个有用的建模框架,可以更好地了解冰川对外部强迫变化的动力响应和形态变化。

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