Abstract. Viscous flow, effusion, and thermal transpiration are the main gas transport modalities for a rarefied gas in a macro-porous medium. They have been well quantified only in the case of simple geometries. This paper presents a numerical method based on the homogenization of kinetic equations producing effective transport properties (permeability… (More)
Rarefied gas flow through a long tube at any temperature ratio
F. Sharipov
J. Vac. Sci. Technol. A
1996
Highly Influential
9 Excerpts
Rotational collision numbers of N2, O2, CO, and CO2 from thermal transpiration measurements
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J. Chem. Phys
1970
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4 Excerpts
Computing Structural and Transport Properties of C/C Composites from 3D Tomographic Images
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Advanced Materials Forum II, Vol. 455-456 of…
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3 Excerpts
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2 Excerpts
A model for collision processes in gases
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Phys. Rev
1954
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3 Excerpts
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2007
1 Excerpt
Modelling of CVI Processes
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Adv. Sci. Technol
2006
1 Excerpt
The film-boiling densification process for C C composite fabrication : From local scale to overall optimization
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Trinquecoste:
2006
1 Excerpt
Assessment of geometrical and transport properties of a fibrous C/C composite preform as digitized by X-ray computed microtomography. Part I : Image acquisition and geometrical properties
O. Coindreau, G. L. Vignoles
J. Mater. Res
2005
2 Excerpts
Global Modelling of I-CVI : Effects of reactor control parameters on a densification