Time and Temperature Dependent Creep in Tournemire Shale
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Zhi Geng | Yan Jin | Pierre Dick | Mian Chen | Alexandre Schubnel | Mian Chen | Yan Jin | C. David | A. Schubnel | Audrey Bonnelye | Christian David | Xin Fang | P. Dick | Audrey Bonnelye | Z. Geng | Xing Fang
[1] R. H. Doremus,et al. Static Fatigue in Glass , 1974 .
[2] Y. Guéguen,et al. Brittle and semibrittle creep of Tavel limestone deformed at room temperature , 2017 .
[3] Bk Atkinson,et al. A fracture mechanics study of subcritical tensile cracking of quartz in wet environments , 1979 .
[4] Philip G. Meredith,et al. Time-dependent cracking and brittle creep in crustal rocks: A review , 2013 .
[5] C. Peach,et al. Compaction creep of wet granular calcite by pressure solution at 28°C to 150°C , 2010 .
[6] Kazuo Tani,et al. An Experimental Method to Determine the Elastic Properties of Transversely Isotropic Rocks by a Single Triaxial Test , 2016, Rock Mechanics and Rock Engineering.
[7] M. Zoback,et al. Time-dependent deformation of shale gas reservoir rocks and its long-term effect on the in situ state of stress , 2014 .
[8] A. Chichagov,et al. Information-Calculating System on Crystal Structure Data of Minerals (MINCRYST) , 1994 .
[9] Y. Guéguen,et al. Damage and rupture dynamics at the brittle-ductile transition: The case of gypsum , 2011 .
[10] G. Dresen,et al. Creep of Posidonia Shale at Elevated Pressure and Temperature , 2017, Rock Mechanics and Rock Engineering.
[11] C. H. Scholz,et al. Mechanism of creep in brittle rock , 1968 .
[12] Teng-fong Wong,et al. The brittle-ductile transition in porous rock: A review , 2012 .
[13] Christopher J. Spiers,et al. Compaction creep of simulated anhydrite fault gouge by pressure solution: theory v. experiments and implications for fault sealing , 2014 .
[14] B. Smart,et al. A constitutive law for low-temperature creep of water-saturated sandstones , 2001 .
[15] Y. Guéguen,et al. Brittle creep and subcritical crack propagation in glass submitted to triaxial conditions , 2015 .
[16] A. Rosakis,et al. A Micromechanics Based Constitutive Model for Brittle Failure at High Strain Rates , 2012 .
[17] G. Beroza,et al. Coseismic and postseismic velocity changes measured by repeating earthquakes , 2004 .
[18] D. F. McTigue,et al. Thermoelastic response of fluid‐saturated porous rock , 1986 .
[19] Y. Golvan,et al. In situ and laboratory investigations of fluid flow through an argillaceous formation at different scales of space and time, Tournemire tunnel, southern France , 2001 .
[20] S. Peng,et al. Relaxation and the behavior of failed rock , 1972 .
[21] E. Haghighat,et al. Characterizing the mechanical behaviour of the Tournemire argillite , 2016, Special Publications.
[22] Philip G. Meredith,et al. Time-dependent brittle creep in Darley Dale sandstone , 2009 .
[23] S. Vinciguerra,et al. Brittle creep in basalt and its application to time-dependent volcano deformation , 2011 .
[24] C. David,et al. Strength anisotropy of shales deformed under uppermost crustal conditions , 2017 .
[25] Dag Kristian Dysthe,et al. The Role of Pressure Solution Creep in the Ductility of the Earth’s Upper Crust , 2013 .
[26] Luigi Burlini,et al. Damage and recovery of calcite rocks deformed in the cataclastic regime , 2004, Geological Society, London, Special Publications.
[27] W. J. Harris,et al. Static fatigue of granite at 200°C , 1982 .
[28] D. Healy. Damage patterns, stress rotations and pore fluid pressures in strike‐slip fault zones , 2008 .
[29] P. Meredith,et al. Time‐dependent compaction band formation in sandstone , 2015 .
[30] P. C. Grew,et al. Stress corrosion theory of crack propagation with applications to geophysics , 1977 .
[31] Zhi Geng,et al. Elastic Anisotropy Reversal During Brittle Creep in Shale , 2017 .
[32] Yves Guéguen,et al. Dispersion and anisotropy of elastic waves in cracked rocks , 2003 .
[33] Christopher J. Spiers,et al. Compaction of granular calcite by pressure solution at room temperature and effects of pore fluid chemistry , 2005 .
[34] Teng-fong Wong,et al. Failure mode and weakening effect of water on sandstone , 2000 .
[35] Christopher H. Scholz,et al. The role of asperity indentation and ploughing in rock friction — I: Asperity creep and stick-slip , 1976 .
[36] The Assessment of Damage Around Critical Engineering Structures Using Induced Seismicity and Ultrasonic Techniques , 2002 .
[37] Zoback,et al. Strength, Creep And Frictional Properties of Gas Shale Reservoir Rocks , 2010 .
[38] Y. Guéguen,et al. Micromechanical constitutive model for low-temperature constant strain rate deformation of limestones in the brittle and semi-brittle regime , 2017 .
[39] Jafar Hadizadeh,et al. Aseismic sliding of active faults by pressure solution creep: Evidence from the San Andreas Fault Observatory at Depth , 2011 .
[40] François Renard,et al. How pressure solution creep and fracturing processes interact in the upper crust to make it behave in both a brittle and viscous manner , 1999 .
[41] Marco Antonellini,et al. Compaction bands: a structural analog for anti-mode I cracks in aeolian sandstone , 1996 .
[42] F. Pellet,et al. Creep and time-dependent damage in argillaceous rocks , 2006 .
[43] Yoshiaki Fujii,et al. Circumferential strain behavior during creep tests of brittle rocks , 1999 .
[44] T. Mitchell,et al. Slip on 'weak' faults by the rotation of regional stress in the fracture damage zone , 2006, Nature.
[45] John R. Rice,et al. Thermodynamics of the quasi-static growth of Griffith cracks , 1978 .
[46] Philip G. Meredith,et al. Micromechanics of brittle creep in rocks , 2012 .
[47] D. Nguyen Minh,et al. Experimental study of the influence of the degree of saturation on physical and mechanical properties in Tournemire shale (France) , 2004 .
[48] B. Bonin,et al. Deep geological disposal in argillaceous formations: studies at the Tournemire test site , 1998 .
[49] P. Delage,et al. A Laboratory Investigation on Thermal Properties of the Opalinus Claystone , 2011 .
[50] P. Meredith,et al. Influence of temperature on brittle creep in sandstones , 2009 .
[51] B. Atkinson. Subcritical crack growth in geological materials , 1984 .
[52] J. Renner,et al. The weakening effect of water on the brittle failure strength of sandstone , 2013 .
[53] M. Naumann,et al. Experimental investigations on anisotropy in dilatancy, failure and creep of Opalinus Clay , 2007 .
[54] M. Sibai,et al. Experimental investigation of the effect of temperature on the mechanical behavior of Tournemire shale , 2014 .
[55] P. Berest,et al. Creep behavior of Bure clayey rock , 2004 .
[56] Hiroo Kanamori,et al. The physics of earthquakes , 2004 .
[57] P. Meredith,et al. Mechanisms of time‐dependent deformation in porous limestone , 2014 .
[58] Justo Cabrera,et al. Desaturation and structure relationships around drifts excavated in the well-compacted Tournemire's argillite (Aveyron, France) , 2007 .
[59] François Renard,et al. Kinetics of crack-sealing, intergranular pressure solution, and compaction around active faults , 2000 .
[60] J. P. Henry,et al. Laboratory investigation of the mechanical behaviour of Tournemire shale , 1997 .
[61] F. Brenguier,et al. Postseismic Relaxation Along the San Andreas Fault at Parkfield from Continuous Seismological Observations , 2008, Science.
[62] C. Spiers,et al. Compaction creep of sands due to time‐dependent grain failure: Effects of chemical environment, applied stress, and grain size , 2014 .