挪威dodovrefjell Snøhetta冰川-永久冻土相互作用与水文地貌过程和地貌的证据

IF 1.4 4区 地球科学 Q3 GEOGRAPHY, PHYSICAL Geografiska Annaler Series A-Physical Geography Pub Date : 2021-07-03 DOI:10.1080/04353676.2021.1955539
F. Miesen, S. Dahl, L. Schrott
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引用次数: 1

摘要

研究了冰川-永久冻土的相互作用,以了解挪威南部多夫莱费尔(Dovrefjell) Snøhetta地块东北侧部分冰川化山谷的冰川-水文影响。特别令人感兴趣的是地形之间的水文联系是如何控制过程的。野外测绘确定了一个冰缘陆地系统,包括一个多热冰川、一个前冰湖、一个冰芯冰碛复合体和一个带有常年霜丘的河流湖泊。在过渡地貌中观察到冰川和冰缘过程之间明显的相互作用,最显著的是在冰芯冰碛中,它构成了一个由冰川-河流过程直接改造的永久冻土环境。利用基于遥感的湖面大小演变和季节性地表沉降观测,评估了这种相互作用在控制前冰期湖泊季节性部分排水中的作用。结果表明,湖泊排水存在双重阈值:根据冰川流量和活动层深度的动态变化,冰芯冰碛可能是融水流出冰川的屏障或通道。这表明融水动力学在控制冰川-冰缘地貌演化中的重要性。为了进一步评估地表和地下水文在连接冰川和冰周域中的重要性,研究了整个研究区域的水稳定氧同位素比率,以绘制冰川到永久冻土的融水流量。研究结果包括一个流域地表和地下水文模型,并促进了对水在非均匀时间尺度上作为瞬时冰川-永久冻土相互作用的热、水力和机械因素的概念理解。
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Evidence of glacier-permafrost interactions associated with hydro-geomorphological processes and landforms at Snøhetta, Dovrefjell, Norway
ABSTRACT Glacier-permafrost interactions are investigated to understand glacial-hydrological influence along a partly glacierised valley on the NE flank of the Snøhetta massif, Dovrefjell, southern Norway. Of particular interest is how processes are controlled by a hydrological connection between landforms. Field mapping identified an ice-marginal landsystem comprising a polythermal glacier, a proglacial lake, an ice-cored moraine complex and a river-lake with perennial frost mounds. A clear interaction between glacial and periglacial processes was observed in transitional landforms, most prominently in the ice-cored moraine which constitutes a permafrost environment that is directly reworked by glaciofluvial processes. The role of this interaction in controlling seasonal, partial drainage of the proglacial lake was assessed using remote sensing-based observations of lake surface size evolution and seasonal surface subsidence. Results suggest a two-fold threshold for lake drainage: Depending on the dynamics of glacial discharge and active layer depth, the ice-cored moraine may either act as a barrier or a pathway to meltwater exiting the glacier. This demonstrates the importance of meltwater dynamics in controlling landform evolution in a glacial-periglacial landscape. To further assess the importance of surface and subsurface hydrology in linking glacial and periglacial domains, water stable oxygen isotope ratios across the study area were studied to map the flow of meltwater from glacier to permafrost. Results include a model of the surface and subsurface hydrology in the catchment and promote a conceptual understanding of water as a thermal, hydraulic and mechanical agent of transient glacier-permafrost interaction operating at heterogeneous timescales.
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来源期刊
CiteScore
3.60
自引率
0.00%
发文量
12
审稿时长
>12 weeks
期刊介绍: Geografiska Annaler: Series A, Physical Geography publishes original research in the field of Physical Geography with special emphasis on cold regions/high latitude, high altitude processes, landforms and environmental change, past, present and future. The journal primarily promotes dissemination of regular research by publishing research-based articles. The journal also publishes thematic issues where collections of articles around a specific themes are gathered. Such themes are determined by the Editors upon request. Finally the journal wishes to promote knowledge and understanding of topics in Physical Geography, their origin, development and current standing through invited review articles.
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