Article (PDF, 10242 KB).pdf

tc-11-2711-2017.pdf
Preview of Article (PDF, 10242 KB)
🔗 Source: tc.copernicus.org
📊 Size: 10 MB
📄 Pages: 15 pages
⬇️ Downloads: 48

Summary

A coupled sea ice-wave model is developed to analyze wave-induced stress and breaking in sea ice. The model consists of a discrete-element bonded-particle sea ice module and a wave module based on the Non-Hydrostatic WAVE model. Simulations show that wave-induced stress reaches maximum values at a certain distance from the ice edge, and the location of maximum stress does not change with the incoming wavelength. Both regular and random waves break the ice into floes with almost identical sizes, depending on ice strength and wave attenuation rates. The study aims to improve understanding of wave-ice interactions and their role in the marginal ice zone, where sea ice extent is decreasing and thin, fragmented ice is becoming more prevalent.

Description

A coupled sea ice-wave model is developed to analyze wave-induced stress and breaking in sea ice.

Technical Information

  • File Format: PDF
  • File Size: 10 MB
  • Pages: 15
  • Language: EN
  • Total Downloads: 48
  • Last Updated: 7 days ago

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