Inferring forms of glacier slip laws from estimates of ice-bed separation during glacier slip

Author:

Woodard Jacob B.ORCID,Zoet Lucas K.ORCID,Iverson Neal R.,Helanow ChristianORCID

Abstract

AbstractSea-level projections depend sensitively on the parameterization used for basal slip in glacier flow models. During slip over rock-beds, ice-bed separation increases with slip velocity and basal water pressure. We present a method for using these variables and measured bed topography to estimate the average bed slope in contact with ice, ${\bar m}$. Three-dimensional numerical modeling of slip over small areas of former beds has shown that changes in ${\bar m}$ with increasing slip velocity and water pressure mimic changes in basal drag. Computed values of ${\bar m}$ can thus provide the form of the slip law that relates drag to velocity and water pressure, avoiding computationally expensive numerical modeling. The method is applied to 618 sections from four former glacier beds. Results generally show an increase in ${\bar m}$, and hence inferred basal drag, with slip velocity up to a limiting value, consistent with a regularized Coulomb slip law.

Funder

United States National Science Foundation

Publisher

Cambridge University Press (CUP)

Subject

Earth-Surface Processes

Reference42 articles.

1. Sliding Relations for Glacier Slip With Cavities Over Three‐Dimensional Beds

2. Spectral signatures of characteristic spatial scales and nonfractal structure in landscapes

3. Future sea-level rise from Greenland’s main outlet glaciers in a warming climate

4. A theoretical treatment of the sliding of glaciers in the absence of cavitation;Fowler;Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences,1981

5. Contribution of Antarctica to past and future sea-level rise;Pollard;Nature,2016

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1. Presence of Frozen Fringe Impacts Soft‐Bedded Slip Relationship;Geophysical Research Letters;2024-06-15

2. Link between glacial striation morphology and induced drag;Geological Society of America Bulletin;2024-02-23

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