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Porus me
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Skjetne, E., Gudmundsson, J.S.: Coupling of wall-slip and high-velocity flow for determination of gas permeability, Paper Number 9522, 1995 International Symposium of the Society of Core Analysts, San Francisco, California, 12–14 September, pp. Skjetne E., Auriault J.L.: Homogenization of wall-slip gas flow through porous media. Princeton University Press, Princeton, NJ (1961) Schaaf S.A., Chambre P.L.: Flow of rarefied gases. Sampath K., Keighin C.W.: Factors affecting gas slippage in tight sandstones of cretaceous age in the Uinta Basin. Prada A., Civan F.: Modification of Darcy’s law for the threshold pressure gradient. Loyalka S.K., Hamoodi S.A.: Poiseuille flow of a rarefied gas in a cylindrical tube: solution of linearized Boltzmann equation.

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Loeb L.B.: The kinetic theory of gases, 2Ed. Klinkenberg, L.J.: The permeability of porous media to liquid and gases, API Drill. Javadpour F., Fisher D., Unsworth M.: Nanoscale gas flow in shale gas sediments. 47(10), 1–7 (2008)įlorence, F.A., Rushing, J.A., Newsham, K.E., Blasingame, T.A.: Improved permeability prediction relations for low permeability sands, Paper SPE 107954 presented at the 2007 SPE Rocky Mountain Oil and Gas Technology Symposium, Denver, Colorado, USA, 16–18 April 2007 Gulf Professional Publisher, Elsevier, Burlington, MA (2007)Ĭivan F.: Generalized Darcy’s law by control volume analysis including capillary and orifice effects. Butterworths, London (1956)Ĭivan F.: Reservoir formation damage-fundamentals, modeling, assessment, and mitigation, 2Ed., pp. Beskok A., Karniadakis G.E.: A model for flows in channels, pipes, and ducts at micro and nano scales.












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