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Title: Discrete-element model for the interaction between ocean waves and sea ice

Journal Article · · Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics

We present a discrete element method (DEM) model to simulate the mechanical behavior of sea ice in response to ocean waves. The wave/ice interaction can potentially lead to the fracture and fragmentation of sea ice depending on the wave amplitude and period. The fracture behavior of sea ice is explicitly modeled by a DEM method, where sea ice is modeled by densely packed spherical particles with finite size. These particles are bonded together at their contact points through mechanical bonds that can sustain both tensile & compressive forces and moments. Fracturing can be naturally represented by the sequential breaking of mechanical bonds. For a given amplitude and period of incident ocean wave, the model provides information for the spatial distribution and time evolution of stress and micro-fractures and the fragment size distribution. We demonstrate that the fraction of broken bonds,, increases with increasing wave amplitude. In contrast, the ice fragment size decreases with increasing amplitude.

Research Organization:
Pacific Northwest National Lab. (PNNL), Richland, WA (United States)
Sponsoring Organization:
USDOE
DOE Contract Number:
AC05-76RL01830
OSTI ID:
1033051
Report Number(s):
PNNL-SA-81118; KJ0403000; TRN: US201202%%553
Journal Information:
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics, Vol. 85, Issue 1
Country of Publication:
United States
Language:
English

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