Basal buoyancy and fast-moving glaciers: in defense of analytic force balance

Author:

van der Veen C. J.

Abstract

Abstract. The geometric approach to force balance advocated by T. Hughes in a series of publications has challenged the analytic approach by implying that the latter does not adequately account for basal buoyancy on ice streams, thereby neglecting the contribution to the gravitational driving force associated with this basal buoyancy. Application of the geometric approach to Byrd Glacier, Antarctica, yields physically unrealistic results, and it is argued that this is because of a key limiting assumption in the geometric approach. A more traditional analytic treatment of force balance shows that basal buoyancy does not affect the balance of forces on ice streams, except locally perhaps, through bridging effects.

Funder

National Aeronautics and Space Administration

Publisher

Copernicus GmbH

Subject

Earth-Surface Processes,Water Science and Technology

Reference22 articles.

1. Cuffey, K. M. and Paterson, W. S. B.: The Physics of Glaciers (Fourth Edition). Burlington MA: Butterworth-Heineman, 693 pp., 2010.

2. Engelder, T: Stress regimes in the lithosphere. Princeton NJ: Princeton University Press, 457 pp., 1993.

3. Hughes, T.: The Jakobshavn Effect, Geophys. Res. Lett., 13, 46–48, 1986.

4. Hughes, T.: On the pulling power of ice streams, J. Glaciol., 38, 125–151, 1992.

5. Hughes, T. J.: Ice Sheets, New York NY, Oxford University Press, 343 pp., 1998

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