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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >The influence of ground ice distribution on geomorphic dynamics since the Little Ice Age in proglacial areas of two cirque glacier systems
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The influence of ground ice distribution on geomorphic dynamics since the Little Ice Age in proglacial areas of two cirque glacier systems

机译:小冰河期以来两个冰河冰川系统冰原区的地冰分布对地貌动力学的影响

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摘要

Holocene glaciers have contributed to an abundance of unstable sediments in mountainous environments. In permafrost environments, these sediments can contain ground ice and are subject to rapid geomorphic activity and evolution under condition of a warming climate. To understand the influence of ground ice distribution on this activity since the Little Ice Age (LIA), we have investigated the Pierre Ronde and Rognes proglacial areas, two cirque glacier systems located in the periglacial belt of the Mont Blanc massif. For the first time, electrical resistivity tomography, temperature data loggers and differential global positioning systems (dGPS) are combined with historical documents and glaciological data analysis to produce a complete study of evolution in time and space of these small landsystems since the LIA. This approach allows to explain spatial heterogeneity of current internal structure and dynamics. The studied sites are a complex assemblage of debris-covered glacier, ice-rich frozen debris and unfrozen debris. Ground ice distribution is related to former glacier thermal regime, isolating effect of debris cover, water supply to specific zones, and topography. In relation with this internal structure, present dynamics are dominated by rapid ice melt in the debris-covered upper slopes, slow creep processes in marginal glacigenic rock glaciers, and weak, superficial reworking in deglaciated moraines. Since the LIA, geomorphic activity is mainly spatially restricted within the proglacial areas. Sediment exportation has occurred in a limited part of the former Rognes Glacier and through water pocket outburst flood and debris flows in Pierre Ronde. Both sites contributed little sediment supply to the downslope geomorphic system, rather by episodic events than by constant supply. In that way, during Holocene and even in a paraglacial context as the recent deglaciation, proglacial areas of cirque glaciers act mostly as sediment sinks, when active geomorphic processes are unable to evacuate sediment downslope, especially because of the slope angle weakness. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:全新世冰川造成了山区环境中大量不稳定的沉积物。在多年冻土环境中,这些沉积物可能含有地冰,并且在气候变暖的条件下会经历快速的地貌活动和演化。为了了解小冰期(LIA)以来地面冰分布对该活动的影响,我们研究了皮埃尔·朗德和罗格涅斯冰川区,这是位于勃朗峰地块冰缘带的两个回旋冰川系统。自LIA以来,电阻层析成像,温度数据记录器和差分全球定位系统(dGPS)首次与历史文献和冰川数据分析相结合,以对这些小型陆地系统的时空演变进行完整的研究。这种方法可以解释当前内部结构和动力学的空间异质性。所研究的地点是由碎屑覆盖的冰川,富含冰的冷冻碎屑和未冻结碎屑组成的复杂集合。地下冰的分布与前冰川的热状态,碎屑覆盖的隔离作用,向特定区域的供水以及地形有关。关于这种内部结构,目前的动力学主要是由碎屑覆盖的上斜坡的快速冰融化,边缘成冰作用的岩石冰川的缓慢蠕变过程以及在冰川成冰的冰mo中的弱而浅表的返工。自LIA以来,地貌活动主要在空间上局限于冰河地区。在前罗格内斯冰川的一部分地区,由于皮埃尔·隆德的水袋爆发性洪水和泥石流,已发生了泥沙出口。这两个地点对下坡地貌系统贡献的沉积物很少,而不是通过偶发事件而不是恒定的供应。这样,在全新世期间,甚至在最近的冰川消融的冰川期背景下,当活跃的地貌过程无法撤消沉积物下坡时(特别是由于坡角弱),圆形冰河冰川的冰川地区大部分充当沉积物汇。版权所有(c)2014 John Wiley&Sons,Ltd.

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