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Erschienen in: Rock Mechanics and Rock Engineering 12/2018

18.07.2018 | Original Paper

Poromechanical Properties of a Sandstone Under Different Stress States

verfasst von: Cong Hu, Franck Agostini, Frédéric Skoczylas, Laurent Jeannin, Ludovic Potier

Erschienen in: Rock Mechanics and Rock Engineering | Ausgabe 12/2018

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Abstract

Poromechanical properties of a sandstone from an underground gas storage site are investigated with the use of a neutral gas to control the pore pressure. The poroelastic theory of anisotropic medium is used to evaluate elastic properties and coupling coefficients under different stress states. In-situ CT observations have been made under uniaxial compression test and they are used to underline some effects due to the occurrence of damage and microcraks. Under hydrostatic loading, pores and micro-cracks are gradually compressed. The initial state of the sandstone is “slightly” transversely isotropic but in a first approach the Biot’s tensor reduces to a scalar. This coefficient decreases with the increase in confining pressure that can be attributed to the closure of micro-cracks. The effect of damage and cracking is investigated with two series of conventional triaxial tests conducted at different confining pressures, either with an increase in pore pressure (series 1) or with a decrease in pore pressure (series 2), to evaluate the coupling coefficients. The results, derived from these two test series, are consistent as regards the effects of cracking on the material behavior. There is an obvious damage due to the triaxial loading which induces a parallel decrease in the ratio E3/(1 − ν3) and in the modulus H3. Axial compaction results in the continual increase in the H1 modulus observed for every sample whatever the measurement technique was.

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Literatur
Zurück zum Zitat Aichi M, Tokunaga T (2011) Thermodynamically consistent anisotropic constitutive relations for a poroelastic material saturated by two immiscible fluids. Int J Rock Mech Min 48:580–584CrossRef Aichi M, Tokunaga T (2011) Thermodynamically consistent anisotropic constitutive relations for a poroelastic material saturated by two immiscible fluids. Int J Rock Mech Min 48:580–584CrossRef
Zurück zum Zitat Alshibli KA, Alramahi BA (2006) Microscopic evaluation of strain distribution in granular materials during shear. J Geotech Geoenviron 132:80–91CrossRef Alshibli KA, Alramahi BA (2006) Microscopic evaluation of strain distribution in granular materials during shear. J Geotech Geoenviron 132:80–91CrossRef
Zurück zum Zitat Al-Tahini AM, Abousleiman YN (2010) Pore-pressure-coefficient anisotropy measurements for intrinsic and induced anisotropy in sandstone. SPE Reserv Eval Eng 13:256–274 Al-Tahini AM, Abousleiman YN (2010) Pore-pressure-coefficient anisotropy measurements for intrinsic and induced anisotropy in sandstone. SPE Reserv Eval Eng 13:256–274
Zurück zum Zitat Aoki T, Tan C, Bamford W (1993) Effects of deformation and strength anisotropy on borehole failures in saturated shales. Int J Rock Mech Min 30:1031–1034CrossRef Aoki T, Tan C, Bamford W (1993) Effects of deformation and strength anisotropy on borehole failures in saturated shales. Int J Rock Mech Min 30:1031–1034CrossRef
Zurück zum Zitat Arfaee MIR, Sola BS (2014) Investigating the effect of fracture–matrix interaction in underground gas storage process at condensate naturally fractured reservoirs. J Nat Gas Sci Eng 19:161–174CrossRef Arfaee MIR, Sola BS (2014) Investigating the effect of fracture–matrix interaction in underground gas storage process at condensate naturally fractured reservoirs. J Nat Gas Sci Eng 19:161–174CrossRef
Zurück zum Zitat Azin R, Malakooti R, Helalizadeh A, Zirrahi M (2014) Investigation of underground sour gas storage in a depleted gas reservoir. Oil Gas Sci Technol 69:1227–1236CrossRef Azin R, Malakooti R, Helalizadeh A, Zirrahi M (2014) Investigation of underground sour gas storage in a depleted gas reservoir. Oil Gas Sci Technol 69:1227–1236CrossRef
Zurück zum Zitat Baud P, Meredith P, Townend E (2012) Permeability evolution during triaxial compaction of an anisotropic porous sandstone. J Geophys Res Solid Earth 117:B05203CrossRef Baud P, Meredith P, Townend E (2012) Permeability evolution during triaxial compaction of an anisotropic porous sandstone. J Geophys Res Solid Earth 117:B05203CrossRef
Zurück zum Zitat Biot MA (1941) General theory of three-dimensional consolidation. J Appl Phys 12:155–164CrossRef Biot MA (1941) General theory of three-dimensional consolidation. J Appl Phys 12:155–164CrossRef
Zurück zum Zitat Carroll M (1979) An effective stress law for anisotropic elastic deformation. J Geophys Res Solid Earth 84:7510–7512CrossRef Carroll M (1979) An effective stress law for anisotropic elastic deformation. J Geophys Res Solid Earth 84:7510–7512CrossRef
Zurück zum Zitat Chen X-T, Davy CA, Skoczylas F, Shao J-F (2009) Effect of heat-treatment and hydrostatic loading upon the poro-elastic properties of a mortar. Cem Concr Res 39:195–205CrossRef Chen X-T, Davy CA, Skoczylas F, Shao J-F (2009) Effect of heat-treatment and hydrostatic loading upon the poro-elastic properties of a mortar. Cem Concr Res 39:195–205CrossRef
Zurück zum Zitat Cheng A-D (1997) Material coefficients of anisotropic poroelasticity. Int J Rock Mech Min 34:199–205CrossRef Cheng A-D (1997) Material coefficients of anisotropic poroelasticity. Int J Rock Mech Min 34:199–205CrossRef
Zurück zum Zitat Coussy O (2004) Poromechanics. Wiley, Oxford Coussy O (2004) Poromechanics. Wiley, Oxford
Zurück zum Zitat De Jong C (2015) Gas storage valuation and optimization. J Natl Gas Sci Eng 24:365–378CrossRef De Jong C (2015) Gas storage valuation and optimization. J Natl Gas Sci Eng 24:365–378CrossRef
Zurück zum Zitat Duan Z, Davy CA, Agostini F, Jeannin L, Troadec D, Skoczylas F (2014) Gas recovery potential of sandstones from tight gas reservoirs. Int J Rock Mech Min 65:75–85CrossRef Duan Z, Davy CA, Agostini F, Jeannin L, Troadec D, Skoczylas F (2014) Gas recovery potential of sandstones from tight gas reservoirs. Int J Rock Mech Min 65:75–85CrossRef
Zurück zum Zitat Hu D, Zhou H, Zhang F, Shao J-F (2010) Evolution of poroelastic properties and permeability in damaged sandstone. Int J Rock Mech Min 47:962–973CrossRef Hu D, Zhou H, Zhang F, Shao J-F (2010) Evolution of poroelastic properties and permeability in damaged sandstone. Int J Rock Mech Min 47:962–973CrossRef
Zurück zum Zitat Li Z (2016) Influence of the microstructure on mechanical properties and damage mechanisms in Al-Si-Cu alloys by using 2D and 3D in-situ analysis. Ph.D thesis, Lille 1 Li Z (2016) Influence of the microstructure on mechanical properties and damage mechanisms in Al-Si-Cu alloys by using 2D and 3D in-situ analysis. Ph.D thesis, Lille 1
Zurück zum Zitat Lings M, Pennington D, Nash D (2000) Anisotropic stiffness parameters and their measurement in a stiff natural clay. Geotechnique 50:109–125CrossRef Lings M, Pennington D, Nash D (2000) Anisotropic stiffness parameters and their measurement in a stiff natural clay. Geotechnique 50:109–125CrossRef
Zurück zum Zitat Lion M, Skoczylas F, Ledésert B (2004) Determination of the main hydraulic and poro-elastic properties of a limestone from Bourgogne, France. Int J Rock Mech Min 41:915–925CrossRef Lion M, Skoczylas F, Ledésert B (2004) Determination of the main hydraulic and poro-elastic properties of a limestone from Bourgogne, France. Int J Rock Mech Min 41:915–925CrossRef
Zurück zum Zitat Liu Z, Shao J (2017) Strength behavior, creep failure and permeability change of a tight marble under triaxial compression. Rock Mech Rock Eng 50:529–541CrossRef Liu Z, Shao J (2017) Strength behavior, creep failure and permeability change of a tight marble under triaxial compression. Rock Mech Rock Eng 50:529–541CrossRef
Zurück zum Zitat Liu Z, Xie S, Shao J-F, Conil N (2015) Effects of deviatoric stress and structural anisotropy on compressive creep behavior of a clayey rock. Appl Clay Sci 114:491–496CrossRef Liu Z, Xie S, Shao J-F, Conil N (2015) Effects of deviatoric stress and structural anisotropy on compressive creep behavior of a clayey rock. Appl Clay Sci 114:491–496CrossRef
Zurück zum Zitat Lockner DA, Beeler NM (2003) Stress-induced anisotropic poroelasticity response in sandstone. In: Electronic proceedings of the 16th ASCE engineering mechanics conference pp 1–13 Lockner DA, Beeler NM (2003) Stress-induced anisotropic poroelasticity response in sandstone. In: Electronic proceedings of the 16th ASCE engineering mechanics conference pp 1–13
Zurück zum Zitat Pei Y, Agostini F, Skoczylas F (2017) The effects of high temperature heating on the gas permeability and porosity of a cementitious material. Cem Concr Res 95:141–151CrossRef Pei Y, Agostini F, Skoczylas F (2017) The effects of high temperature heating on the gas permeability and porosity of a cementitious material. Cem Concr Res 95:141–151CrossRef
Zurück zum Zitat Shao J (1998) Poroelastic behaviour of brittle rock materials with anisotropic damage. Mech Mater 30:41–53CrossRef Shao J (1998) Poroelastic behaviour of brittle rock materials with anisotropic damage. Mech Mater 30:41–53CrossRef
Zurück zum Zitat Song Y, Davy CA, Bertier P, Skoczylas F, Talandier J (2017) On the porosity of COx claystone by gas injection. Microporous Mesoporous Mater 239:272–286CrossRef Song Y, Davy CA, Bertier P, Skoczylas F, Talandier J (2017) On the porosity of COx claystone by gas injection. Microporous Mesoporous Mater 239:272–286CrossRef
Zurück zum Zitat Suarez-Rivera R, Fjær E (2013) Evaluating the poroelastic effect on anisotropic, organic-rich, mudstone systems. Rock Mech Rock Eng 46:569–580CrossRef Suarez-Rivera R, Fjær E (2013) Evaluating the poroelastic effect on anisotropic, organic-rich, mudstone systems. Rock Mech Rock Eng 46:569–580CrossRef
Zurück zum Zitat Tan X, Konietzky H (2014) Numerical study of variation in Biot’s coefficient with respect to microstructure of rocks. Tectonophysics 610:159–171CrossRef Tan X, Konietzky H (2014) Numerical study of variation in Biot’s coefficient with respect to microstructure of rocks. Tectonophysics 610:159–171CrossRef
Zurück zum Zitat Tan X, Konietzky H, Frühwirt T (2015) Experimental and numerical study on evolution of Biot’s coefficient during failure process for brittle rocks. Rock Mech Rock Eng 48:1289–1296CrossRef Tan X, Konietzky H, Frühwirt T (2015) Experimental and numerical study on evolution of Biot’s coefficient during failure process for brittle rocks. Rock Mech Rock Eng 48:1289–1296CrossRef
Zurück zum Zitat Wang H (2000) Theory of linear poroelasticity with applications to geomechanics and hydrogeology. Princeton University Press, Princeton Wang H (2000) Theory of linear poroelasticity with applications to geomechanics and hydrogeology. Princeton University Press, Princeton
Zurück zum Zitat Wang Y, Agostini F, Skoczylas F, Jeannin L, Portier É (2017) Experimental study of the gas permeability and bulk modulus of tight sandstone and changes in its pore structure. Int J Rock Mech Min 91:203–209CrossRef Wang Y, Agostini F, Skoczylas F, Jeannin L, Portier É (2017) Experimental study of the gas permeability and bulk modulus of tight sandstone and changes in its pore structure. Int J Rock Mech Min 91:203–209CrossRef
Zurück zum Zitat Yuan H, Agostini F, Duan Z, Skoczylas F, Talandier J (2017) Measurement of Biot’s coefficient for COx argillite using gas pressure technique. Int J Rock Mech Min 92:72–80CrossRef Yuan H, Agostini F, Duan Z, Skoczylas F, Talandier J (2017) Measurement of Biot’s coefficient for COx argillite using gas pressure technique. Int J Rock Mech Min 92:72–80CrossRef
Metadaten
Titel
Poromechanical Properties of a Sandstone Under Different Stress States
verfasst von
Cong Hu
Franck Agostini
Frédéric Skoczylas
Laurent Jeannin
Ludovic Potier
Publikationsdatum
18.07.2018
Verlag
Springer Vienna
Erschienen in
Rock Mechanics and Rock Engineering / Ausgabe 12/2018
Print ISSN: 0723-2632
Elektronische ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-018-1550-x

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