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The paper is devoted to the analysis of nonlinear elastic two-component models of saturated porous media, which in a linear form, reproduce as closely as possible the classical Biot's model. We present a full evaluation of the second law of thermodynamics for four classes of nonlinear models. It is proven that two of them in which there is no dependence on higher gradients cannot lead to the Biot's model. On the other hand, two other models in which a dependence on the gradient of porosity is introduced, yield linear constitutive relations but not the field equations appearing in the Biot's model. However, a recombination of partial stresses and momentum sources leads to Biot's equations. This analysis together with earlier publications on the subject exhausts the discussion of the question of thermodynamical admissibility of the Biot's model.
Czasopismo
Rocznik
Tom
Strony
709--736
Opis fizyczny
Bibliogr. 19 poz.
Twórcy
autor
- Weierstrass Institute for Applied Analysis and Stochastics, Berlin, Germany
Bibliografia
- 1. I. Tolstoy, Acoustics, elasticity, and thermodynamics of porous media: Twenty-one Papers by M. A. Biot, Acoustical Society of America, 1991. 2
- 2. M. A. Biot, D. G. Willis, The elastic coefficients of the theory of consolidation, Jour. Appl. Mech., 24, 594 601, 1957.
- 3. K. Wilmański, Some questions on material objectivity arising in models of porous materials, [in:] M. Brocato |Ed.|, Rational Continua, classical and new, Springer-Verlag, Italia Sri, Milano, 149-161, 2001.
- 4. I. Edelman, K. Wilmański, Asymptotic analysis of a surface waves at vacuum/porous medium and liquid/porous medium interfaces, Continuum Mech. Thermodyn., 14: 25-44, 2002.
- 5. M. A. Goodmann, S. C. Cowin, A continuum theory for granular materials, Arch. Rat. Mech. Anal., 44, 249 266, 1972.
- 6. R. M. Bowen, Compressible porous media models by use of the theory of mixtures, Int. J. Engn. Sci, 20, 697-763 1982.
- 7. K. Wilmański, Thermomechanics of continua, Springer, Berlin (1998).
- 8. K. Wilmański, Lagrangean Model of two-phase porous material, J. Non—Equilib. Thermodyn., 20, 50-77, 1995.
- 9. K. Wilmański, Mass exchange, diffusion and large deformations of poroelastic materials, [in:] Modeling and mechanics of granular and porous materials, G. Capriz, V. N. Ghionna, P. Giovine [Eds.], 213-244, Birkhauser 2002.
- 10. K. Wilmański, Note on the notion of incompressibility in theories of porous and granular materials, ZAMM, 81, 37-42, 2001.
- 11. K. Wilmański, Thermodynamics of multicomponent continua, [in:] Earthquake thermodynamics and phase transformations in the earth’s interior, J. Majewski, R. Teisseyre [Eds.], 567-655, Academic Press, San Diego 2001.
- 12. I. Müller, Thermodynamics, Pitman 1985.
- 13. W. G. Gray, Elements of a systematic procedure for the derivation of macroscale conservation equations for multiphase flow in porous media, [in:] Kinetic and continuum theories of granular and porous media, K. Hutter, K. Wilmański [Eds.], CISM Courses and Lectures No. 400, Springer WienNewYork, 67-130, 1999.
- 14. T. Wilhelm, K. Wilmański, On the Onset of Flow Instabilities in granular media due to porosity inhomogeneities, Int. Jour. Multiphase Flows, in print 2002.
- 15. R. D. Stoll, Sediment acoustics, Lecture Notes in Earth Sciences, vol. 26, Springer- Verlag, Berlin 1989.
- 16. C. Truesdell, R. D. Toupin, The Classical field theories, [in:] Handbuch der Physik, S. FLUGGE [Ed.], Springer-Verlag, Berlin, 226-793, 1960.
- 17. K. Wilmański, Waves in porous and granular materials, [in:] Kinetic and continuum theories of granular and porous media, K. Hotter, K. Wilmański [Eds.], CISM Courses and Lectures No. 400, Springer WienNewYork, 131-186, 1999.
- 18. M. Cieszko, J. Kubik, Constitutive description of fluid-saturated porous media with immiscible elastic constituens, [in:] Problems of environmental and damage mechanics Proc. of the XXXI Polish Solid Mechanics Conference SolMec’96, Mierki near Olsztyn, September 9-14, 1996, W. Kosiński, R. de Boer and D. Gross [Eds.], IPPT PAN, Warszawa, 39-57 1997.
- 19. M. Cieszko, J. Kubik, M. Kaczmarek, (in Polish) 2000, Fundamentals of dynamics of saturated porous media, IPPT PAN, Warszawa, 2000.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT4-0002-0088
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