HR: 0800h
AN: OS41A-0451 [Abstracts]
TI: Anisotropic Continuum Model of Granulated Sea Ice
AU: * Wilchinsky, A V
EM: aw@cpom.ucl.ac.uk
AF: Centre for Polar Observation and Modelling, Department of Space and Climate Physics, University College
London, Gower Street, London, WC1E 6BT
United Kingdom
AU: Feltham, D L
EM: Daniel.Feltham@cpom.ucl.ac.uk
AF: Centre for Polar Observation and Modelling, Department of Space and Climate Physics, University College
London, Gower Street, London, WC1E 6BT
United Kingdom
AB:
A continuum model describing sea ice as a layer of granulated thick ice intersected by long and narrow regions of thinner
ice, leads, is developed. Sea ice is considered to be a two-dimensional granular material, whose deformation occurs through
motion of floes generated in ice fracturing under applied stress. We consider dynamics of mesoscale leads generated under
tensile stress, whose dimensions is larger than those of floes, so that deformation of the surrounding ice is described
through the granular plastic rheology, but still sufficiently smaller than the basin scale, so that they can be modelled
using continuum approach. The model consists of the stress expression depending on orientational distribution of lead
characteristics, thick ice thickness and rheology. It also includes evolution equations for the orientational distribution
of leads, their thickness and width expressed through second-rank tensors. The results of the calculations show that the
model produces reasonable behaviour in simple flows. The consideration of the thick ice as granular material elliminates the
problem of infinite lead opening under pure shear produced by an earlier model considering thick ice deformation only through
ridging.
DE: 4203 Analytical modeling
DE: 4207 Arctic and Antarctic oceanography
DE: 4540 Ice mechanics and air/sea/ice exchange processes
DE: 3210 Modeling
SC: Ocean Sciences [OS]
MN: 2004 AGU Fall Meeting