E. Bemer, M. Boutéca, O. Vincké, N. Hoteit, and O. Ozanam, Poromechanics: From Linear to Nonlinear Poroelasticity and Poroviscoelasticity. Oil & Gas Science and TechnologyRevue de l'IFP, vol.56, pp.531-544, 2001.
DOI : 10.2516/ogst:2001043

URL : https://hal.archives-ouvertes.fr/hal-02053960

M. A. Biot, Nonlinear and Semilinear Rheology of Porous Solids, J. Geoph. Res, vol.78, pp.4924-4937, 1973.
DOI : 10.1029/jb078i023p04924

URL : https://hal.archives-ouvertes.fr/hal-01368469

M. Boutéca, J. P. Sarda, and J. Laurent, Rock Mechanics Contribution to the Determination of Fluid Flow Properties. SCA-Advances in Core Evaluation II-Reservoir appraisal, 1991.

M. Boutéca and Y. Guéguen, Mechanical Properties of Rocks: Pore Pressure and Scale Effects. Oil & Gas Science and Technology-Revue de l'IFP, vol.54, pp.703-714, 1999.

M. J. Boutéca, J. P. Sarda, and O. Vincké, Constitutive Law for Permeability Evolution of Sandstones During Depletion, 2000.

R. Brawn and E. Jahns, Cracking and Compaction Behavior of Sandstone, 1998.

L. Caruso, G. Simmons, and R. Wilkens, The Physical Properties of a Set of Sandstones-Part I. The Samples, Int. J. Rock. Mech. Min. Sci. & Geomech. Abstr, vol.22, pp.381-392, 1985.

P. A. Charlez, Theoretical Fundamentals, vol.1, 1991.

P. A. Charlez and O. Heugas, Measurement of Thermoporoelastic Properties of Rocks: Theory and Applications. Rock Characterization, ISRM Symposium: Eurock'92, 1992.

O. Coussy, , 2004.

J. F. Couvreur, J. F. Thimus, and E. Lousberg, A Conceptual Model for Correlating Ultrasonic Attenuation to Deformational Behavior, 1998.

F. Engstrøm, Rock Mechanical Properties of Danish North Sea Chalk. Fourth North Sea Chalk Symposium, pp.21-23, 1992.

E. Fjaer, R. M. Holt, P. Horsrud, A. M. Raaen, R. Risnes et al., Contexte géologique et variations des propriétés physiques d'un calcaire tendre. Geotechnical Engineering of Hard Soils-Soft Rocks, 1991.

S. Homand and J. F. Shao, Mechanical Behaviour of a Porous Chalk and Water/Chalk Interaction. Part I: Experimental Study. Oil & Gas Science and Technology-Revue de l'IFP, vol.55, pp.591-598, 2000.
URL : https://hal.archives-ouvertes.fr/hal-02054075

S. Homand and J. F. Shao, Mechanical Behaviour of a Porous Chalk and Water/Chalk Interaction. Part II: Numerical Modelling. Oil & Gas Science and Technology-Revue de l'IFP, vol.55, pp.599-609, 2000.
URL : https://hal.archives-ouvertes.fr/hal-02054075

G. M. Keaney, P. G. Meredith, and S. A. Murell, Laboratory Study of Permeability Evolution in a "Tight" Sandstone under Non-Hydrostatic Stress Conditions, 1998.

I. Larsen, E. Fjaer, L. Renlie, and Z. Zheng, The Effects of Porosity and Stress on Dilatancy in Sandstone, 1998.

W. Lin, Mechanical Behavior of Mesaverde Shale and Sandstone at High Pressure, 1981.

P. Longuemare, F. Schneider, and A. Onaisi, Study of the Behaviour of a Petroleum Reservoir During Depletion Using an Elasto-Plastic Constitutive Model. Eurock'96, Barla Ed, pp.875-881, 1996.

C. Matà, Etude expérimentale et modélisation mécanique des effets du balayage à l'eau dans une craie saturée d'huileApplication à l'industrie pétrolière, École Nationale des Ponts et Chaussées, 2001.

E. D. Nicholson, G. Goldsmith, and J. M. Cook, Direct Observation and Modeling of Sand Production Processes in Weak Sandstone, 1998.

J. Poutet, D. Manzoni, F. Hage-chehade, C. Jacquin, M. Boutéca et al., The Effective Mechanical Properties of Random Porous Media, J. Mech. Phys. Solids, vol.44, pp.1587-1620, 1996.

D. W. Rhett and L. W. Teufel, Failure Criteria for High Porosity North Sea Chalk. Fourth North Sea Chalk Symposium, pp.21-23, 1992.

E. Sanchez-palencia, P. M. Schutjens, and H. De-ruig, The Influence of Stress Path and Permeability of an Overpressurised Reservoir Sandstone: Some Experimental Data, Phys. Chem. Earth, vol.22, pp.1-2, 1980.

P. M. Schutjens, T. L. Blanton, J. W. Martin, B. C. Lehr, and M. N. Baaijens, Depletion-Induced Compaction of an Overpressurised Reservoir Sandstone: an Experimental Approach, 1998.

O. Vincké and M. Boutéca, An Estimation of Terminal Bulk Moduli of Sandstones Using their Petrographic and Petrophysic Description. Structure et comportement mécanique des géomatériaux, colloque René Houpert, Comptes rendus, pp.27-36, 1992.

O. Vincké, An Estimation of Bulk Moduli of Sandstones as a Function of Confining Pressure Using their Petrographic and Petrophysic description, 1994.

O. Vincké, M. J. Boutéca, J. M. Piau, and D. Fourmaintraux, Study of the Effective Stress at Failure. Biot Conference on Poromechanics, pp.635-639, 1998.

J. B. Walsh and M. A. Grosenbaugh, A New Model for Analyzing the Effect of Fractures on Compressibility, Journal of Geophysical Research, vol.84, pp.3532-3536, 1979.

P. Watt, G. F. Davies, and R. Connel, The Elastic Properties of Composites Material, Review of Geophysics and Space Physics, vol.14, pp.541-563, 1976.

T. M. Wissler and G. Simmons, The Physical Properties of a Set of Sandstones-Part II: Permanent and Elastic Strains During Hydrostatic Compression to 200 MPa, Int. J. Rock. Mech. Min. Sci. & Geomech. Abstr, vol.22, pp.393-406, 1985.

R. Wilkens, G. Simmons, T. M. Wissler, and L. Caruso, The Physical Properties of a Set of Sandstones-Part III: The Effects of Fined-grained Pore-filling Material on Compressional Wave Velocity, Int. J. Rock. Mech. Min. Sci. & Geomech. Abstr, vol.23, pp.313-325, 1986.

T. F. Wong, C. David, and W. Zhu, The Transition from Brittle to Cataclastic Flow: Mechanical Deformation, Journal of Geophysical Research, vol.102, pp.3009-3025, 1997.

D. P. Yale and B. Crawford, Plasticity and Permeability in Carbonates: Dependance on Stress Path and Porosity, 1998.

J. Zhang, C. S. Rai, and C. Sondergeld, Mechanical Strength of Reservoir Material: Key Information for Sand Prediction, 1998.

W. Zhu and T. F. Wong, The Transition from Brittle to Cataclastic Flow: Permeability Evolution, Journal of Geophysical Research, vol.102, pp.3027-3041, 1997.