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Lattice-Boltzmann modeling of the air permeability of polar firn

Authors :
Courville, Zoe
Hörhold, Maria
Hopkins, Mark
Albert, M. R.
Courville, Zoe
Hörhold, Maria
Hopkins, Mark
Albert, M. R.
Source :
EPIC3Journal of Geophysical Research-Earth Surface, Wiley, 115, pp. F04032, ISSN: 0148-0227
Publication Year :
2010

Abstract

Recent advances in three‐dimensional (3D) imaging of snow and firn combined with numerical modeling of flow through complex geometries have greatly improved the ability to predict permeability values based on microstructure. In this work, we combined 3D reconstructions of polar firn microstructure obtained from microcomputed tomography (mCT) and a 3D lattice‐Boltzmann (LB) model of air flow. We compared the modeled results to measurements of permeability for polar firn with a wide range of grain and pore‐scale characteristics. The results show good agreement between permeability measurements and calculated permeability values from the LB model over a wide range of sample types. The LB model is better at predicting measured permeability values than traditional empirical equations for polar firn.

Details

Database :
OAIster
Journal :
EPIC3Journal of Geophysical Research-Earth Surface, Wiley, 115, pp. F04032, ISSN: 0148-0227
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn970005490
Document Type :
Electronic Resource