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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >The internal structure of rock glaciers and recently deglaciated slopes as revealed by geoelectrical tomography: insights on permafrost and recent glacial evolution in the Central and Western Alps (Italy-France)
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The internal structure of rock glaciers and recently deglaciated slopes as revealed by geoelectrical tomography: insights on permafrost and recent glacial evolution in the Central and Western Alps (Italy-France)

机译:地电层析成像显示的岩石冰川和最近冰川的内部结构:中阿尔卑斯山和西阿尔卑斯山的多年冻土和近期冰川演变的见解(意大利-法国)

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摘要

Ground ice of permafrost origin and sedimentary ice of glacial origin can coexist in locations where rock glaciers and glaciers interacted, as well as in glacigenic sediments abandoned by a retreating glacier and subsequently exposed again to atmospheric cooling. Some of these geomorphological settings in the Central (Foscagno rock glacier) and Western Alps (Marinet and Schiantala rock glaciers, Schiantala debris-covered glacier, Maledia glacier) were explored by means of geoelectrical tomographies. The aim was that of inferring the presence of ice and cryologically interpreting electrical stratigraphies in order to test whether or not the internal structure of these landforms can be used for the reconstruction of recent permafrost and glacier evolution. Geomorphological data assisted these reconstructions and available borehole stratigraphies were used to calibrate the resistivities. Along with the ice-debris mixture, massive ice has also been found as lenses both at the apex and the front of the studied rock glaciers. These lenses of sedimentary origin are thought to be transferred from a glacier snout to sectors of rock glacier and eventually embedded into the permafrost creep. The scarcity of frozen debris in the mid-upper part of the rock glaciers - as revealed by low resistivity values - can be due to the disruptive effect of the over-riding glacier over the permafrost. The near-surface sedimentary ice masses detected along the slopes of the studied glacial cirques are interpreted as or debris-covered terminations of the glaciers still visible upward, or as fragments of it detached by the main bodies. These ice masses are locally associated to medium-high resistive sediments, consistent with permafrost occurrence. This indicates that the non-glacial environment established during the deglaciation allowed the onset of frozen sediments formation. Overall, the results indicate that internal structure of rock glaciers and recent-deglaciated slopes can store the different climate-related episodes occurred in a specific area, such as those linked to the shifting between glacial to criotic condition and vice-versa.
机译:多年冻土来源的地冰和冰川来源的沉积冰可以在岩石冰川和冰川相互作用的地方以及被后退冰川抛弃并随后再次暴露于大气冷却的冰川成因沉积物中共存。通过地电层析成像技术探索了中部(福斯卡尼奥岩石冰川)和西阿尔卑斯山(马林特和席恩塔拉岩石冰川,席恩塔拉残骸覆盖的冰川,马累迪亚冰川)的某些地貌环境。目的是推断冰的存在,并用冰冻学的方式解释电地层,以测试这些地貌的内部结构是否可用于重建最近的多年冻土和冰川演化。地貌学数据辅助了这些重建,并利用可用的井眼地层来校准电阻率。除冰屑混合物外,还在研究的冰川顶部和前端都发现大量的冰晶状体。这些沉积物的晶状体被认为是从冰川的嘴部转移到岩石冰川的各个部分,并最终嵌入多年冻土蠕变中。如低电阻率值所示,岩石冰川中上部的冰冻碎石稀缺,可能是由于上覆冰川对永久冻土的破坏作用所致。沿研究的冰irclope的坡度检测到的近地表沉积冰块被解释为冰川残骸或残骸覆盖的终端仍向上可见,或被主体分离。这些冰块与中高电阻沉积物局部相关,这与多年冻土的发生相一致。这表明在冰消过程中建立的非冰川环境允许开始形成冻结的沉积物。总体而言,结果表明,岩石冰川的内部结构和近期冰川融化的斜坡可以存储在特定区域发生的与气候有关的不同事件,例如那些与冰川状态和冰河状态之间的转换有关的事件。

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