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Record #110127:

On modeling the energetics of the ridging process / M.A. Hopkins, William D. Hibler, III.

Title: On modeling the energetics of the ridging process / M.A. Hopkins, William D. Hibler, III.
Author(s): Hopkins, M. A.
Hibler, William D.,
Date: 1991.
In: Journal of Offshore Mechanics and Arctic Engineering. (1991.), Vol. 113(2) (1991)
Abstract: Develops two-dimensional particle simulation model of sea-ice ridging process. Ridges are formed from floating layer of disk-shaped rubble compressed between converging multi-year floes. Energy consumed in ridge growth, including dissipation, is calculated explicitly. Results of numerical experiments using model indicate that amount of energy required to ridge ice may be two or three times larger than previously thought.
Notes:

Journal of Offshore Mechanics and Arctic Engineering. Vol. 113(2) :105-108 (1991).

Revised version of paper presented in: Sinha, N.K. and others, eds. Proceedings of the Eighth International Conference on Offshore Mechanics and Arctic Engineering--1989--The Hague, The Netherlands, March 19-23, 1989. Vol. 4. Arctic and polar technology. New York, American Society of Mechanical Engineers, 1989, p. 175-178.

Keywords: 519.673 -- Modelling.
551.32 -- Glaciology.
551.326 -- Floating ice.
551.326.7 -- Sea ice.
551.326.3 -- Floating ice, structure and surface features.
E6 -- Glaciology: floating ice.
SPRI record no.: 110127

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245 10 ‡aOn modeling the energetics of the ridging process /‡cM.A. Hopkins, William D. Hibler, III.
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500 ## ‡aJournal of Offshore Mechanics and Arctic Engineering. Vol. 113(2) :105-108 (1991).
500 ## ‡aRevised version of paper presented in: Sinha, N.K. and others, eds. Proceedings of the Eighth International Conference on Offshore Mechanics and Arctic Engineering--1989--The Hague, The Netherlands, March 19-23, 1989. Vol. 4. Arctic and polar technology. New York, American Society of Mechanical Engineers, 1989, p. 175-178.
520 3# ‡aDevelops two-dimensional particle simulation model of sea-ice ridging process. Ridges are formed from floating layer of disk-shaped rubble compressed between converging multi-year floes. Energy consumed in ridge growth, including dissipation, is calculated explicitly. Results of numerical experiments using model indicate that amount of energy required to ridge ice may be two or three times larger than previously thought.
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650 07 ‡a551.32 -- Glaciology.‡2udc
650 07 ‡a551.326 -- Floating ice.‡2udc
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700 1# ‡aHibler, William D.,‡cIII.
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