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A slip law for glaciers on deformable beds
by
Zoet, Lucas K.
, Iverson, Neal R.
in
Beds (process engineering)
/ Creeks & streams
/ Deformation
/ Formability
/ Glaciers
/ Glaciohydrology
/ Ice
/ Ice sheets
/ Melt temperature
/ Sea level
/ Sea level rise
/ Sliding
/ Slip resistance
/ Slip velocity
/ Velocity
/ Water
/ Water pressure
2020
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A slip law for glaciers on deformable beds
by
Zoet, Lucas K.
, Iverson, Neal R.
in
Beds (process engineering)
/ Creeks & streams
/ Deformation
/ Formability
/ Glaciers
/ Glaciohydrology
/ Ice
/ Ice sheets
/ Melt temperature
/ Sea level
/ Sea level rise
/ Sliding
/ Slip resistance
/ Slip velocity
/ Velocity
/ Water
/ Water pressure
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
A slip law for glaciers on deformable beds
by
Zoet, Lucas K.
, Iverson, Neal R.
in
Beds (process engineering)
/ Creeks & streams
/ Deformation
/ Formability
/ Glaciers
/ Glaciohydrology
/ Ice
/ Ice sheets
/ Melt temperature
/ Sea level
/ Sea level rise
/ Sliding
/ Slip resistance
/ Slip velocity
/ Velocity
/ Water
/ Water pressure
2020
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Journal Article
A slip law for glaciers on deformable beds
2020
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Overview
Slip of marine-terminating ice streams over beds of deformable till is responsible for most of the contribution of the West Antarctic Ice Sheet to sea level rise. Flow models of the ice sheet and till-bedded glaciers elsewhere require a law that relates slip resistance, slip velocity, and water pressure at the bed. We present results of experiments in which pressurized ice at its melting temperature is slid over a water-saturated till bed. Steady-state slip resistance increases with slip velocity owing to sliding of ice across the bed, but above a threshold velocity, till shears at its rate-independent Coulomb strength. These results motivate a generalized slip law for glacier-flow models that combines processes of hard-bedded sliding and bed deformation.
Publisher
American Association for the Advancement of Science,The American Association for the Advancement of Science
Subject
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