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Volumn 2, Issue 1, 2004, Pages 124-157

Asymptotic transport models for heat and mass transfer in reactive porous media

Author keywords

Boltzmann equation; Diffusion approximation; Heat and mass transfer; Homogenization; Porous media; Rarefied gas flow

Indexed keywords

DIFFUSION; GASES; HEAT TRANSFER; HOMOGENIZATION METHOD; MASS TRANSFER; PARTIAL DIFFERENTIAL EQUATIONS; PHASE INTERFACES; POROUS MATERIALS;

EID: 33845753614     PISSN: 15403459     EISSN: 15403467     Source Type: Journal    
DOI: 10.1137/S1540345902411736     Document Type: Article
Times cited : (18)

References (11)
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    • Bardos, C.1    Golse, F.2    Levermore, D.3
  • 5
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    • A kinetic theory of the filtration of rarefied gas in an anisotropic porous medium
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    • An energy-transport model for semiconductors derived from the Boltzmann equation
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    • Kinetic equations and asymptotic theory
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    • F. Bouchut, F. Golse, and M. Pulverenti, Kinetic Equations and Asymptotic Theory, Series in Applied Mathematics, B. Perthame and L. Desvillettes, eds., Gauthier-Villars/Elsevier, Paris, 2000.
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    • Bouchut, F.1    Golse, F.2    Pulverenti, M.3
  • 10
    • 0034833609 scopus 로고    scopus 로고
    • A new data structure for the computation of equivalent properties in 3D porous media
    • Ann Arbor, MI, 2001, D. Dutta and H. P. Seidel, eds., ACM, New York
    • J. F Delesse, B. Le Saec, and G. L. Vignoles, A new data structure for the computation of equivalent properties in 3D porous media, in Proceedings of the 6th ACM Symposium on Solid Modelling and Applications, Ann Arbor, MI, 2001, D. Dutta and H. P. Seidel, eds., ACM, New York, 2001, p. 301.
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    • Charrier, P.1    Dubroca, B.2


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