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Fox & Squire 1991
Fox, C. and Squire, V.A. (1991). Strain in shore fast ice due to incoming ocean waves and swell. Journal of Geophysical Research 96: doi: 10.1029/90JC02270. issn: 0148-0227.

Using a development from the theoretical model presented by Fox and Squire (1990), this paper investigates the strain field generated in shore fast ice by normally incident ocean waves and swell. After a brief description of the model and its convergence, normalized absolute strain (relative to a 1-m incident wave) is found as a function of distance from the ice edge for various wave periods, ice thicknesses, and water depths. The squared transfer function, giving the relative ability of incident waves of different periods to generate strain in the ice, is calculated, and its consequences are discussed. The ice is then forced with a Pierson-Moskowitz spectrum, and the consequent strain spectra are plotted as a function of penetration into the ice sheet. Finally, rms strain, computed as the incoherent sum of the strains resulting from energy in the open water spectrum, is found. The results have implications to the breakup of shore fast ice and hence to the floe size distribution of the marginal ice zone. ¿ American Geophysical Union 1991

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Abstract

Keywords
Oceanography, General, Arctic and Antarctic oceanography, Oceanography, Physical, Ice mechanics and air-sea-ice exchange processes, Oceanography, Physical, Surface waves and tides, Oceanography, General, Analytical modeling
Journal
Journal of Geophysical Research
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Publisher
American Geophysical Union
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