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Bibliographic Details
Main Authors: Greve, Ralf, Placidi, Luca, Seddik, Hakime
Format: Preprint
Published: 2009
Subjects:
Online Access:https://arxiv.org/abs/0903.3078
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author Greve, Ralf
Placidi, Luca
Seddik, Hakime
author_facet Greve, Ralf
Placidi, Luca
Seddik, Hakime
contents In order to study the mechanical behaviour of polar ice masses, the method of continuum mechanics is used. The newly developed CAFFE model (Continuum-mechanical, Anisotropic Flow model, based on an anisotropic Flow Enhancement factor) is described, which comprises an anisotropic flow law as well as a fabric evolution equation. The flow law is an extension of the isotropic Glen's flow law, in which anisotropy enters via an enhancement factor that depends on the deformability of the polycrystal. The fabric evolution equation results from an orientational mass balance and includes constitutive relations for grain rotation and recrystallization. The CAFFE model fulfills all the fundamental principles of classical continuum mechanics, is sufficiently simple to allow numerical implementations in ice-flow models and contains only a limited number of free parameters. The applicability of the CAFFE model is demonstrated by a case study for the site of the EPICA (European Project for Ice Coring in Antarctica) ice core in Dronning Maud Land, East Antarctica.
format Preprint
id arxiv_https___arxiv_org_abs_0903_3078
institution arXiv
publishDate 2009
record_format arxiv
spellingShingle A continuum-mechanical model for the flow of anisotropic polar ice
Greve, Ralf
Placidi, Luca
Seddik, Hakime
Geophysics
In order to study the mechanical behaviour of polar ice masses, the method of continuum mechanics is used. The newly developed CAFFE model (Continuum-mechanical, Anisotropic Flow model, based on an anisotropic Flow Enhancement factor) is described, which comprises an anisotropic flow law as well as a fabric evolution equation. The flow law is an extension of the isotropic Glen's flow law, in which anisotropy enters via an enhancement factor that depends on the deformability of the polycrystal. The fabric evolution equation results from an orientational mass balance and includes constitutive relations for grain rotation and recrystallization. The CAFFE model fulfills all the fundamental principles of classical continuum mechanics, is sufficiently simple to allow numerical implementations in ice-flow models and contains only a limited number of free parameters. The applicability of the CAFFE model is demonstrated by a case study for the site of the EPICA (European Project for Ice Coring in Antarctica) ice core in Dronning Maud Land, East Antarctica.
title A continuum-mechanical model for the flow of anisotropic polar ice
topic Geophysics
url https://arxiv.org/abs/0903.3078