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Sediment behavior controls equilibrium width of subglacial channels

  • Anders Damsgaard
  • , Jenny Suckale
  • , Jan A. Piotrowski
  • , Morgane Houssais
  • , Matthew R. Siegfried
  • , Helen A. Fricker

Publikation: Bidrag til tidsskriftArtikelForskningpeer review

17 Citationer (Scopus)

Resumé

Flow-frictional resistance at the base of glaciers and ice sheets is strongly linked to subglacial water pressure. Understanding the physical mechanisms that govern meltwater fluxes in subglacial channels is hence critical for constraining variations in ice flow. Previous mathematical descriptions of soft-bed subglacial channels assume a viscous till rheology, which is inconsistent with laboratory data and the majority of field studies. Here, we use a grain-scale numerical formulation coupled to pore-water dynamics to analyze the structural stability of channels carved into soft beds. Contrary to the soft-bed channel models assuming viscous till rheology, we show that the flanks of till channels can support substantial ice loads without creep closure of the channel, because the sediment has finite frictional strength. Increased normal stress on the channel flanks causes plastic failure of the sediment, and the channel rapidly shrinks to increase the ice-bed contact area. We derive a new parameterization for subglacial channelized flow on soft beds and show that channel dynamics are dominated by fluvial erosion and deposition processes with thresholds linked to the plastic rheology of subglacial tills. We infer that the described limits to channel size may cause subglacial drainage to arrange in networks of multiple closely spaced channels.

OriginalsprogEngelsk
Sider (fra-til)1034-1048
Antal sider15
TidsskriftJournal of Glaciology
Vol/bind63
Udgave nummer242
DOI
StatusUdgivet - 1 dec. 2017

Programområde

  • Programområde 5: Natur og klima

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