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- Geomechanics for Energy and the Environment
The merits and shortcomings of the two approaches are shown. Volume 27 , Issue 3. The full text of this article hosted at iucr. If you do not receive an email within 10 minutes, your email address may not be registered, and you may need to create a new Wiley Online Library account. If the address matches an existing account you will receive an email with instructions to retrieve your username. Lyesse Laloui Corresponding Author E-mail address: lyesse.
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Tools Request permission Export citation Add to favorites Track citation. Share Give access Share full text access. Share full text access. Please review our Terms and Conditions of Use and check box below to share full-text version of article. Abstract This paper addresses various issues concerning the modelling of solid—liquid—air coupling in multiphase porous media with an application to unsaturated soils.
Their combined citations are counted only for the first article. Merged citations. This "Cited by" count includes citations to the following articles in Scholar. Add co-authors Co-authors. Upload PDF.
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Follow this author. New articles by this author. New citations to this author. New articles related to this author's research. Email address for updates. My profile My library Metrics Alerts. Sign in. Lai, J. Hou and V. King , Helen M. Byrne , Oliver E. Jensen , and Kevin M. Shakesheff , Mathematical modelling of engineered tissue growth using a multiphase porous flow mixture theory , J. Lyness, Numerical algorithms based on the theory of complex variables , Proc. ACM 22nd Nat.
Lyness and C.
The Coupled Theory of Mixtures in Geomechanics with Applications on Apple Books
Martins, Ilan M. Kroo, and Juan J.
Martins , Peter Sturdza , and Juan J. Software 29 , no. Mow, S. Kuei, W. Lai and C. Armstrong, Biphasic creep and stress relaxation of articular cartilage in compression: theory and experiments , ASME J. Solids 15 , no. Wheeler , A coupling of mixed and continuous Galerkin finite element methods for poroelasticity. The continuous in time case , Comput. The discrete-in-time case , Comput. Wheeler , A coupling of mixed and discontinuous Galerkin finite-element methods for poroelasticity , Comput.
Rajapakse, Stress analysis of borehole in poroelastic medium , Journal of Engineering Mechanics, 6 , Roose, P. Netti, L.
Munn, Y. Boucher, and R. Jain, Solid stress generated by spheroid growth estimated using a linear poroelastic model , Microvascular Research, , Rutqvist and C. Tsang, Analysis of thermal-hydrologic-mechanical behavior near an emplacement drift at Yucca mountain , Journal of Contaminant Hydrology, , Settari and D. Showalter , Diffusion in poro-elastic media , J.
Geomechanics for Energy and the Environment
Fluid Mech. J Biomech Eng. Swan, R. Lakes, R. Brand, and K.
masrovicodog.tk Stewart, Micromechanically based poroelastic modeling of fluid flow in haversian bone , Journal of Biomechanical Engineering, 1 , Feb. Terzaghi, Principle of soil mechanics , Eng.
- Coupling Yield Criteria and Micro-mechanics with the Theory of Mixtures.
- Special order items.
News Record, A Series of Articles, Waldman, Michael Lee, Boundary conditions during biaxial testing of planar connective tissues. Part 1: Dynamic Behavior , J. Wang and M. Dusseault, A coupled conductive-convective thermo-poroelastic solution and implications for wellbore stability , Journal of Petroleum Science and Engineering, 38 , MR References  W. Sean McElwain, A mixture theory for the genesis of residual stresses in growing tissues.