A model for interaction between conduits and surrounding hydraulically connected distributed drainage based on geomorphological evidence from Keewatin, Canada
Модель взаимодействия между каналами и окружающей гидравлически связанной распределённой дренажной системой на основе геоморфологических данных из Киватина, Канада
2020-09-10
SCID: 54.1/qx6gvr7a
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ArcticDEMdistributed drainage systemseskersmeltwater corridorssubglacial meltwater drainage
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Abstract (AI)
Abstract. We identify and map visible traces of subglacial meltwater drainage around the former Keewatin Ice Divide, Canada, from high-resolution Arctic Digital Elevation Model (ArcticDEM) data. We find similarities in the characteristics and spatial locations of landforms traditionally treated separately (i.e. meltwater channels, meltwater tracks and eskers) and propose that creating an integrated map of meltwater routes captures a more holistic picture of the large-scale drainage in this area. We propose the grouping of meltwater channels and meltwater tracks under the term meltwater corridor and suggest that these features in the order of 10s–100s m wide, commonly surrounding eskers and transitioning along flow between different types, represent the interaction between a central conduit (the esker) and surrounding hydraulically connected distributed drainage system (the meltwater corridor). Our proposed model is based on contemporary observations and modelling which suggest that connections between conduits and the surrounding distributed drainage system within the ablation zone occur as a result of overpressurisation of the conduit. The widespread aerial coverage of meltwater corridors (5 %–36 % of the bed) provides constraints on the extent of basal uncoupling induced by basal water pressure fluctuations. Geomorphic work resulting from repeated connection to the surrounding hydraulically connected distributed drainage system suggests that basal sediment can be widely accessed and evacuated by meltwater.
Key Findings
1
High-resolution ArcticDEM mapping reveals widespread visible traces of subglacial meltwater drainage around the former Keewatin Ice Divide in Canada.
2
Meltwater channels, meltwater tracks, and eskers share characteristics and spatial relationships, supporting an integrated map of meltwater routes.
3
Meltwater corridors and central eskers are interpreted as hydraulically connected distributed drainage and conduit systems, with connections driven by conduit overpressurisation.
4
Meltwater corridors cover 5%–36% of the bed, indicating substantial basal uncoupling and widespread access to and evacuation of basal sediment by meltwater.
5
The study groups meltwater channels and tracks as “meltwater corridors,” typically tens to hundreds of metres wide and commonly surrounding eskers.
Research Object
Subglacial meltwater drainage around the former Keewatin Ice Divide, including eskers, meltwater corridors, and their hydraulically connected distributed drainage system
Research Subject
The geomorphological interaction and hydraulic connections between central meltwater conduits (eskers) and surrounding distributed drainage, including overpressurisation, basal uncoupling, and sediment evacuation
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2020-09-10
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