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Numerical simulation of Knudsen diffusion in metallic foam

Authors :
Graeme E. Murch
Thomas Fiedler
Irina V. Belova
Source :
Computational Materials Science. 50:1795-1799
Publication Year :
2011
Publisher :
Elsevier BV, 2011.

Abstract

This paper addresses diffusion of air within a cellular metal. A Knudsen diffusion simulation is performed on both simplified model structures and, for the first time, computed tomography data of real materials. In the first part, the three deflection models (mirror reflection, random deflection and random cosine deflection) are compared. It is found that the Knudsen diffusivities of the model structures exhibit different values for each deflection model. The second part is a Knudsen diffusion simulation on computed tomography data of M-Pore® aluminium foam from which an estimate of its Knudsen diffusivity is obtained. Four sub-geometries of the same specimen are converted into voxel calculation models. All calculations show high Knudsen diffusivities with average values of 1.99 m 2 /s (random cosine deflection) and 2.09 m 2 /s (random deflection). Plots of the Knudsen diffusivity versus porosity show an increase of diffusivity with porosity.

Details

ISSN :
09270256
Volume :
50
Database :
OpenAIRE
Journal :
Computational Materials Science
Accession number :
edsair.doi...........7511653ea57682380c34c2aa0e296b17