Interactions between Irregular Wave Fields and Sea Ice: A Physical Model for Wave Attenuation and Ice Breakup in an Ice Tank

Author:

Passerotti Giulio1ORCID,Bennetts Luke G.2,von Bock und Polach Franz34,Alberello Alberto5,Puolakka Otto6,Dolatshah Azam1,Monbaliu Jaak7,Toffoli Alessandro1

Affiliation:

1. a The University of Melbourne, Melbourne, Victoria, Australia

2. b University of Adelaide, Adelaide, South Australia, Australia

3. c Hamburg University of Technology, Hamburg, Germany

4. d Universität Hamburg, Hamburg, Germany

5. e Università di Torino, Turin, Italy

6. f Aalto University, Helsinki, Finland

7. g KU Leuven, Leuven, Belgium

Abstract

Abstract Irregular, unidirectional surface water waves incident on model ice in an ice tank are used as a physical model of ocean surface wave interactions with sea ice. Results are given for an experiment consisting of three tests, starting with a continuous ice cover and in which the incident wave steepness increases between tests. The incident waves range from causing no breakup of the ice cover to breakup of the full length of ice cover. Temporal evolution of the ice edge, breaking front, and mean floe sizes are reported. Floe size distributions in the different tests are analyzed. The evolution of the wave spectrum with distance into the ice-covered water is analyzed in terms of changes of energy content, mean wave period, and spectral bandwidth relative to their incident counterparts, and pronounced differences are found between the tests. Further, an empirical attenuation coefficient is derived from the measurements and shown to have a power-law dependence on frequency comparable to that found in field measurements. Links between wave properties and ice breakup are discussed.

Funder

HYDRALAB+

ACE Foundation

Australian Research Council

Australian Antarctic Science Program

Australia–Germany Joint Research Cooperation Scheme

Japanese Society for the Promotion of Science

Publisher

American Meteorological Society

Subject

Oceanography

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