Skip to main content
Erschienen in: Rock Mechanics and Rock Engineering 1/2018

07.09.2017 | Original Paper

Thermo-mechanical Properties of Upper Jurassic (Malm) Carbonate Rock Under Drained Conditions

verfasst von: Liang Pei, Guido Blöcher, Harald Milsch, Günter Zimmermann, Ingo Sass, Ernst Huenges

Erschienen in: Rock Mechanics and Rock Engineering | Ausgabe 1/2018

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

The present study aims to quantify the thermo-mechanical properties of Neuburger Bankkalk limestone, an outcrop analog of the Upper Jurassic carbonate formation (Germany), and to provide a reference for reservoir rock deformation within future enhanced geothermal systems located in the Southern German Molasse Basin. Experiments deriving the drained bulk compressibility C were performed by cycling confining pressure p c between 2 and 50 MPa at a constant pore pressure p p of 0.5 MPa after heating the samples to defined temperatures between 30 and 90 °C. Creep strain was then measured after each loading and unloading stage, and permeability k was obtained after each creep strain measurement. The drained bulk compressibility increased with increasing temperature and decreased with increasing differential pressure p d = p c − p p showing hysteresis between the loading and unloading stages above 30 °C. The apparent values of the indirectly calculated Biot coefficient α ind containing contributions from inelastic deformation displayed the same temperature and pressure dependencies. The permeability k increased immediately after heating and the creep rates were also temperature dependent. It is inferred that the alteration of the void space caused by temperature changes leads to the variation of rock properties measured under isothermal conditions while the load cycles applied under isothermal conditions yield additional changes in pore space microstructure. The experimental results were applied to a geothermal fluid production scenario to constrain drawdown and time-dependent effects on the reservoir, overall, to provide a reference for the hydromechanical behavior of geothermal systems in carbonate, and more specifically, in Upper Jurassic lithologies.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Anhänge
Nur mit Berechtigung zugänglich
Literatur
Zurück zum Zitat Agemar T, Weber J, Schulz R (2014) Deep geothermal energy production in Germany. Energies 7:4397–4416CrossRef Agemar T, Weber J, Schulz R (2014) Deep geothermal energy production in Germany. Energies 7:4397–4416CrossRef
Zurück zum Zitat Atkinson BK (1982) Subcritical crack propagation in rocks: theory, experimental results and applications. J Struct Geol 4(1):41–56CrossRef Atkinson BK (1982) Subcritical crack propagation in rocks: theory, experimental results and applications. J Struct Geol 4(1):41–56CrossRef
Zurück zum Zitat Atkinson BK (1984) Subcritical crack growth in geological materials. J Geophys Res 89(B6):4077–4114CrossRef Atkinson BK (1984) Subcritical crack growth in geological materials. J Geophys Res 89(B6):4077–4114CrossRef
Zurück zum Zitat Atkinson BK, Meredith PG (1987) The theory of subcritical crack growth with applications to minerals and rocks. In: Atkinson BK (ed) Fracture mechanics of rock. Academic Press, London Atkinson BK, Meredith PG (1987) The theory of subcritical crack growth with applications to minerals and rocks. In: Atkinson BK (ed) Fracture mechanics of rock. Academic Press, London
Zurück zum Zitat Baud P, Schubnel A, Wong TF (2000) Dilatancy, compaction and failure mode in Solnhofen limestone. J Geophys Res 105:19289–19303CrossRef Baud P, Schubnel A, Wong TF (2000) Dilatancy, compaction and failure mode in Solnhofen limestone. J Geophys Res 105:19289–19303CrossRef
Zurück zum Zitat Bauer SJ, Handin J (1983) Thermal expansion and cracking of three confined, water-saturated igneous rocks to 800 °C. Rock Mech Rock Eng 16:181–198CrossRef Bauer SJ, Handin J (1983) Thermal expansion and cracking of three confined, water-saturated igneous rocks to 800 °C. Rock Mech Rock Eng 16:181–198CrossRef
Zurück zum Zitat Biot MA, Willis DG (1957) The elastic coefficients of the theory of consolidation. J Appl Mech 24:594–601 Biot MA, Willis DG (1957) The elastic coefficients of the theory of consolidation. J Appl Mech 24:594–601
Zurück zum Zitat Blenkinsop TG (2000) Deformation microstructures and mechanisms in minerals and rocks. Springer, Dordrecht Blenkinsop TG (2000) Deformation microstructures and mechanisms in minerals and rocks. Springer, Dordrecht
Zurück zum Zitat Blöcher G, Reinsch T, Hassanzadegan A, Milsch H, Zimmermann G (2014) Direct and indirect laboratory measurements of poroelastic properties of two consolidated sandstones. Int J Rock Mech Min Sci 67:191–201 Blöcher G, Reinsch T, Hassanzadegan A, Milsch H, Zimmermann G (2014) Direct and indirect laboratory measurements of poroelastic properties of two consolidated sandstones. Int J Rock Mech Min Sci 67:191–201
Zurück zum Zitat Boley BA, Weiner JH (1960) Theory of thermal stresses. Wiley, New York Boley BA, Weiner JH (1960) Theory of thermal stresses. Wiley, New York
Zurück zum Zitat Brantut N, Heap MJ, Baud P, Meredith PG (2014) Mechanics of time-dependent deformation in porous limestone. J Geophys Res Solid Earth 119:5444–5463CrossRef Brantut N, Heap MJ, Baud P, Meredith PG (2014) Mechanics of time-dependent deformation in porous limestone. J Geophys Res Solid Earth 119:5444–5463CrossRef
Zurück zum Zitat Browning J, Meredith P, Gudmundsson A (2016) Cooling-dominated cracking in thermally stressed volcanic rocks. Geophys Res Lett 43:8417–8425CrossRef Browning J, Meredith P, Gudmundsson A (2016) Cooling-dominated cracking in thermally stressed volcanic rocks. Geophys Res Lett 43:8417–8425CrossRef
Zurück zum Zitat Busenberg E, Plummer LN (1986) A comparative study of dissolution and crystal growth kinetics of calcite and aragonite. US Geol Surv Bull 1578:139–168 Busenberg E, Plummer LN (1986) A comparative study of dissolution and crystal growth kinetics of calcite and aragonite. US Geol Surv Bull 1578:139–168
Zurück zum Zitat Caine JS, Evans JP, Forster CB (1996) Fault zone architecture and permeability structure. Geology 24:1025–1028CrossRef Caine JS, Evans JP, Forster CB (1996) Fault zone architecture and permeability structure. Geology 24:1025–1028CrossRef
Zurück zum Zitat Contreras E, Bermejo F (1983) Thermal expansion behaviour of Cerro Prieto sandstones and other sedimentary rocks under stress. In: Proceedings of the ninth workshop geothermal reservoir engineering. Stanford University, Stanford, CA Contreras E, Bermejo F (1983) Thermal expansion behaviour of Cerro Prieto sandstones and other sedimentary rocks under stress. In: Proceedings of the ninth workshop geothermal reservoir engineering. Stanford University, Stanford, CA
Zurück zum Zitat Dandekar DP, Ruoff AL (1968) Temperature dependence of the elastic constants of calcite between 160 K and 300 K. J Appl Phys 39(13):6004–6009CrossRef Dandekar DP, Ruoff AL (1968) Temperature dependence of the elastic constants of calcite between 160 K and 300 K. J Appl Phys 39(13):6004–6009CrossRef
Zurück zum Zitat David EC, Brantut N, Schubnel A, Zimmerman RW (2012) Sliding crack model for nonlinearity and hysteresis in the uniaxial stress–strain curve of rock. Int J Rock Mech Min Sci 52:9–17CrossRef David EC, Brantut N, Schubnel A, Zimmerman RW (2012) Sliding crack model for nonlinearity and hysteresis in the uniaxial stress–strain curve of rock. Int J Rock Mech Min Sci 52:9–17CrossRef
Zurück zum Zitat Durney DW (1972) Solution transfer, an important geological deformation mechanism. Nature 235:315–317CrossRef Durney DW (1972) Solution transfer, an important geological deformation mechanism. Nature 235:315–317CrossRef
Zurück zum Zitat EI-Shaarani A (1972) Deformation moduli of water-bearing formations at elevated temperatures, M. S. research report. University of California, Berkeley EI-Shaarani A (1972) Deformation moduli of water-bearing formations at elevated temperatures, M. S. research report. University of California, Berkeley
Zurück zum Zitat Fetter CW (2001) Applied hydrogeology. Prentice Hall, New Jersey Fetter CW (2001) Applied hydrogeology. Prentice Hall, New Jersey
Zurück zum Zitat Fischer GJ, Paterson MS (1989) Dilatancy during rock deformation at high temperatures and pressures. J Geophys Res 94(B12):17607–17617CrossRef Fischer GJ, Paterson MS (1989) Dilatancy during rock deformation at high temperatures and pressures. J Geophys Res 94(B12):17607–17617CrossRef
Zurück zum Zitat Fortin J, Guéguen Y, Schubnel A (2007) Effects of pore collapse and grain crushing on ultrasonic velocities and VP/VS. J Geophys Res Atmos 112(B8):1–16CrossRef Fortin J, Guéguen Y, Schubnel A (2007) Effects of pore collapse and grain crushing on ultrasonic velocities and VP/VS. J Geophys Res Atmos 112(B8):1–16CrossRef
Zurück zum Zitat Fredrich JT, Wong TF (1986) Micromechanics of thermally induced cracking in three crustal rocks. J Geophys Res 91(B12):12743–12764CrossRef Fredrich JT, Wong TF (1986) Micromechanics of thermally induced cracking in three crustal rocks. J Geophys Res 91(B12):12743–12764CrossRef
Zurück zum Zitat Ghabezloo S, Sulem J, Guedon S, Martineau F (2009) Effective stress law for the permeability of a limestone. Int J Rock Mech Min Sci 46(2):297–306CrossRef Ghabezloo S, Sulem J, Guedon S, Martineau F (2009) Effective stress law for the permeability of a limestone. Int J Rock Mech Min Sci 46(2):297–306CrossRef
Zurück zum Zitat Graef V, Jamek M, Rohatsch A, Tschegg E (2013) Effects of thermal-heating cycle treatment on thermal expansion behaviour of different building stones. Int J Rock Mech Min Sci 64:228–235 Graef V, Jamek M, Rohatsch A, Tschegg E (2013) Effects of thermal-heating cycle treatment on thermal expansion behaviour of different building stones. Int J Rock Mech Min Sci 64:228–235
Zurück zum Zitat Grant MA, Clearwater J, Quinão J, Bixley PF, Brun ML (2013) Thermal stimulation of geothermal wells: a review of field data. In: Proceedings of the thirty-eighth workshop on geothermal reservoir engineering. Stanford University, Stanford, CA Grant MA, Clearwater J, Quinão J, Bixley PF, Brun ML (2013) Thermal stimulation of geothermal wells: a review of field data. In: Proceedings of the thirty-eighth workshop on geothermal reservoir engineering. Stanford University, Stanford, CA
Zurück zum Zitat Gratier JP (2011) Fault permeability and strength evolution related to fracturing and healing episodic processes (years to millennia): the role of pressure solution. Oil Gas Sci Technol Rev IFP Energies Nouv 66(3):491–506CrossRef Gratier JP (2011) Fault permeability and strength evolution related to fracturing and healing episodic processes (years to millennia): the role of pressure solution. Oil Gas Sci Technol Rev IFP Energies Nouv 66(3):491–506CrossRef
Zurück zum Zitat Gratier JP, Favreau P, Renard F, Pili E (2002) Fluid pressure evolution during the earthquake cycle controlled by fluid flow and pressure solution crack sealing. Earth Planets Space 54:1139–1146CrossRef Gratier JP, Favreau P, Renard F, Pili E (2002) Fluid pressure evolution during the earthquake cycle controlled by fluid flow and pressure solution crack sealing. Earth Planets Space 54:1139–1146CrossRef
Zurück zum Zitat Gunnarsson G (2011) Mastering reinjection in the Hellisheidi Field, SW-Iceland: a story of successes and failures. In: Proceedings of the thirty-sixth workshop on geothermal reservoir engineering. Stanford University, Stanford, CA Gunnarsson G (2011) Mastering reinjection in the Hellisheidi Field, SW-Iceland: a story of successes and failures. In: Proceedings of the thirty-sixth workshop on geothermal reservoir engineering. Stanford University, Stanford, CA
Zurück zum Zitat Hart DJ, Wang HF (1995) Laboratory measurements of a complete set of poroelastic moduli for Berea sandstone and Indiana limestone. J Geophys Res 100(B9):17741–17751CrossRef Hart DJ, Wang HF (1995) Laboratory measurements of a complete set of poroelastic moduli for Berea sandstone and Indiana limestone. J Geophys Res 100(B9):17741–17751CrossRef
Zurück zum Zitat Hassanzadegan A, Zimmermann G (2014) A poroelastic description of permeability evolution. Pure Appl Geophys 171(7):1187–1201CrossRef Hassanzadegan A, Zimmermann G (2014) A poroelastic description of permeability evolution. Pure Appl Geophys 171(7):1187–1201CrossRef
Zurück zum Zitat Hassanzadegan A, Blöcher G, Zimmermann G, Milsch H (2012) Thermoporoelastic properties of Flechtinger sandstone. Int J Rock Mech Min Sci 49:94–104CrossRef Hassanzadegan A, Blöcher G, Zimmermann G, Milsch H (2012) Thermoporoelastic properties of Flechtinger sandstone. Int J Rock Mech Min Sci 49:94–104CrossRef
Zurück zum Zitat Homuth S, Götz AE, Sass I (2014) Lithofacies and depth dependency of thermo- and petrophysical rock parameters of the Upper Jurassic geothermal carbonate reservoirs of the Molasse Basin. Z Dtsch Ges Geowiss 165(3):487–493 Homuth S, Götz AE, Sass I (2014) Lithofacies and depth dependency of thermo- and petrophysical rock parameters of the Upper Jurassic geothermal carbonate reservoirs of the Molasse Basin. Z Dtsch Ges Geowiss 165(3):487–493
Zurück zum Zitat Hubbert MK (1956) Darcy’s law and the field equations of flow of underground fluids. Am Inst Min Metall Eng Trans 207:222–239 Hubbert MK (1956) Darcy’s law and the field equations of flow of underground fluids. Am Inst Min Metall Eng Trans 207:222–239
Zurück zum Zitat Inskeep WP, Bloom PR (1985) An evaluation of rate equations for calcite precipitation kinetics at pCO2 less than 0.01 atm and pH greater than 8. Geochim Cosmochim Acta 9:2165–2180CrossRef Inskeep WP, Bloom PR (1985) An evaluation of rate equations for calcite precipitation kinetics at pCO2 less than 0.01 atm and pH greater than 8. Geochim Cosmochim Acta 9:2165–2180CrossRef
Zurück zum Zitat Jaeger JC, Cook NGW, Zimmerman RW (2007) Fundamentals of rock mechanics. Blackwell, Oxford Jaeger JC, Cook NGW, Zimmerman RW (2007) Fundamentals of rock mechanics. Blackwell, Oxford
Zurück zum Zitat Klapperich H, Tondera D, Blöcher G, Moeck I, Steiger T, Bems C, Hild S (2013) Geothermie forschungsprojekt „Allgäu 2.0“– Forschungsansätze, Laboruntersuchungen & Planungsschritte. 19. Tagung für Ingenieurgeologie mit Forum für Junge Ingenieurgeologen, München Klapperich H, Tondera D, Blöcher G, Moeck I, Steiger T, Bems C, Hild S (2013) Geothermie forschungsprojekt „Allgäu 2.0“– Forschungsansätze, Laboruntersuchungen & Planungsschritte. 19. Tagung für Ingenieurgeologie mit Forum für Junge Ingenieurgeologen, München
Zurück zum Zitat Kozusnikova A, Konecny P (2011) Influence of temperature on the permeability of rocks. Geotechnique 61(12):1081–1085CrossRef Kozusnikova A, Konecny P (2011) Influence of temperature on the permeability of rocks. Geotechnique 61(12):1081–1085CrossRef
Zurück zum Zitat Krishnan RS, Srinivasan R, Devanarayanan S (1979) Thermal expansion of crystals: international series in the science of the solid state, vol 12. Pergamon Press, Oxford Krishnan RS, Srinivasan R, Devanarayanan S (1979) Thermal expansion of crystals: international series in the science of the solid state, vol 12. Pergamon Press, Oxford
Zurück zum Zitat Lobree D (1968) Measurement of compressibilities of reservoir-type rocks at elevated temperatures. M.S. Thesis, University of California, Berkeley Lobree D (1968) Measurement of compressibilities of reservoir-type rocks at elevated temperatures. M.S. Thesis, University of California, Berkeley
Zurück zum Zitat Nakashima S (1995) Diffusivity of ions in pore water as a quantitative basis for rock deformation rate estimates. Tectonophysics 245(3–4):185–203CrossRef Nakashima S (1995) Diffusivity of ions in pore water as a quantitative basis for rock deformation rate estimates. Tectonophysics 245(3–4):185–203CrossRef
Zurück zum Zitat Nicolas A, Fortin J, Regnet JB, Dimanov A, Guéguen Y (2016) Brittle and semi-brittle behaviours of a carbonate rock: influence of water and temperature. Geophys J Int 206:438–456CrossRef Nicolas A, Fortin J, Regnet JB, Dimanov A, Guéguen Y (2016) Brittle and semi-brittle behaviours of a carbonate rock: influence of water and temperature. Geophys J Int 206:438–456CrossRef
Zurück zum Zitat Nur A, Byerlee JD (1971) An exact effective stress law for elastic deformation of rock with fluids. J Geophys Res 76(26):6414–6419CrossRef Nur A, Byerlee JD (1971) An exact effective stress law for elastic deformation of rock with fluids. J Geophys Res 76(26):6414–6419CrossRef
Zurück zum Zitat Pei L, Blöcher G, Milsch H, Deon F, Zimmermann G, Rühaak W, Sass I, Huenges E (2016) Thermal strain in a water-saturated limestone under hydrostatic and deviatoric stress states. Tectonophysics 688:49–64CrossRef Pei L, Blöcher G, Milsch H, Deon F, Zimmermann G, Rühaak W, Sass I, Huenges E (2016) Thermal strain in a water-saturated limestone under hydrostatic and deviatoric stress states. Tectonophysics 688:49–64CrossRef
Zurück zum Zitat Rao KVK, Naidu SVN, Murthy KS (1968) Precision lattice parameters and thermal expansion of calcite. J Phys Chem Solids 29:245–248CrossRef Rao KVK, Naidu SVN, Murthy KS (1968) Precision lattice parameters and thermal expansion of calcite. J Phys Chem Solids 29:245–248CrossRef
Zurück zum Zitat Renard F, Ortoleva P, Gratier JP (1997) Pressure solution in sandstones: influence of clays and dependence on temperature and stress. Tectonophysics 280:257–266CrossRef Renard F, Ortoleva P, Gratier JP (1997) Pressure solution in sandstones: influence of clays and dependence on temperature and stress. Tectonophysics 280:257–266CrossRef
Zurück zum Zitat Renard F, Gratier JP, Jamtveit B (2000) Kinetics of crack-sealing, intergranular pressure solution, and compaction around active faults. J Struct Geol 22:1395–1407CrossRef Renard F, Gratier JP, Jamtveit B (2000) Kinetics of crack-sealing, intergranular pressure solution, and compaction around active faults. J Struct Geol 22:1395–1407CrossRef
Zurück zum Zitat Renard F, Gundersen E, Hellemann R, Collombet M, LeGuen Y (2005) Numerical modeling of the effect of carbon dioxide sequestration on the rate of pressure solution creep in limestone: Preliminary results. Oil Gas Sci Technol 60:381–399CrossRef Renard F, Gundersen E, Hellemann R, Collombet M, LeGuen Y (2005) Numerical modeling of the effect of carbon dioxide sequestration on the rate of pressure solution creep in limestone: Preliminary results. Oil Gas Sci Technol 60:381–399CrossRef
Zurück zum Zitat Renard F, Bernard D, Desrues J, Ougier-Simonin A (2009) 3D imaging of fracture propagation using synchrotron X-ray microtomography. Earth Planet Sci Lett 286(1):285–291CrossRef Renard F, Bernard D, Desrues J, Ougier-Simonin A (2009) 3D imaging of fracture propagation using synchrotron X-ray microtomography. Earth Planet Sci Lett 286(1):285–291CrossRef
Zurück zum Zitat Rice JR, Cleary MP (1976) Some basic stress diffusion solutions for fluid-saturated elastic porous media with compressible constituents. Rev Geophys Space Phys 14(2):227–241CrossRef Rice JR, Cleary MP (1976) Some basic stress diffusion solutions for fluid-saturated elastic porous media with compressible constituents. Rev Geophys Space Phys 14(2):227–241CrossRef
Zurück zum Zitat Risnes R, Madland M, Hole M, Kwabiah N (2005) Water weakening of chalk—mechanical effects of water-glycol mixtures. J Petrol Sci Eng 48:21–36CrossRef Risnes R, Madland M, Hole M, Kwabiah N (2005) Water weakening of chalk—mechanical effects of water-glycol mixtures. J Petrol Sci Eng 48:21–36CrossRef
Zurück zum Zitat Schellschmidt R, Sanner B, Pester S, Schulz R (2010) Geothermal energy use in Germany. In: Proceedings of the world geothermal congress 2010, Bali Schellschmidt R, Sanner B, Pester S, Schulz R (2010) Geothermal energy use in Germany. In: Proceedings of the world geothermal congress 2010, Bali
Zurück zum Zitat Schoenball M, Sahara DP, Kohl T (2014) Time-dependent brittle creep as a mechanism for time-delayed wellbore failure. Int J Rock Mech Min Sci 70:400–406 Schoenball M, Sahara DP, Kohl T (2014) Time-dependent brittle creep as a mechanism for time-delayed wellbore failure. Int J Rock Mech Min Sci 70:400–406
Zurück zum Zitat Somerton W, Janah A, Ashqar P (1981) Thermal expansion of fluid-saturated rocks under stress. In: SPWLA 22nd annual logging symposium, Mexico City Somerton W, Janah A, Ashqar P (1981) Thermal expansion of fluid-saturated rocks under stress. In: SPWLA 22nd annual logging symposium, Mexico City
Zurück zum Zitat Vajdova V, Baud P, Wong TF (2004) Compaction, dilatancy and failure in porous carbonate rocks. J Geophys Res 109:B05204 Vajdova V, Baud P, Wong TF (2004) Compaction, dilatancy and failure in porous carbonate rocks. J Geophys Res 109:B05204
Zurück zum Zitat Vajdova V, Zhu W, Chen TMN, Wong TF (2010) Micromechanics of brittle faulting and cataclastic flow in Tavel limestone. J Struct Geol 32:1158–1169CrossRef Vajdova V, Zhu W, Chen TMN, Wong TF (2010) Micromechanics of brittle faulting and cataclastic flow in Tavel limestone. J Struct Geol 32:1158–1169CrossRef
Zurück zum Zitat Vajdova V, Baud P, Wu L, Wong TF (2012) Micromechanics of inelastic compaction in two allochemical limestones. J Struct Geol 43:100–117CrossRef Vajdova V, Baud P, Wu L, Wong TF (2012) Micromechanics of inelastic compaction in two allochemical limestones. J Struct Geol 43:100–117CrossRef
Zurück zum Zitat Von Gonten WD, Choudhary BK (1969) The effect of pressure and temperature on pore volume compressibility. SPE Preprint: 2526 Von Gonten WD, Choudhary BK (1969) The effect of pressure and temperature on pore volume compressibility. SPE Preprint: 2526
Zurück zum Zitat Walsh JB (1965) The effect of cracks on the compressibility of rock. J Geophys Res 70(2):381–389CrossRef Walsh JB (1965) The effect of cracks on the compressibility of rock. J Geophys Res 70(2):381–389CrossRef
Zurück zum Zitat Weber J, Ganz B, Schellschmidt R, Sanner B, Schulz R (2015) Geothermal energy use in Germany. In: Proceedings of the world geothermal congress 2015, Melbourne Weber J, Ganz B, Schellschmidt R, Sanner B, Schulz R (2015) Geothermal energy use in Germany. In: Proceedings of the world geothermal congress 2015, Melbourne
Zurück zum Zitat Weyl PK (1959) Pressure solution and the force of crystallization: a phenomenological theory. J Geophys Res 64(11):2001–2025CrossRef Weyl PK (1959) Pressure solution and the force of crystallization: a phenomenological theory. J Geophys Res 64(11):2001–2025CrossRef
Zurück zum Zitat Widhalm C, Tschegg E, Eppensteiner W (1996) Anisotropic thermal expansion causes deformation of marble claddings. J Perform Constr Facil 10(1):5–10CrossRef Widhalm C, Tschegg E, Eppensteiner W (1996) Anisotropic thermal expansion causes deformation of marble claddings. J Perform Constr Facil 10(1):5–10CrossRef
Zurück zum Zitat Wong TF, Baud P (2012) The brittle-ductile transition in porous rock: a review. J Struct Geol 44:25–53CrossRef Wong TF, Baud P (2012) The brittle-ductile transition in porous rock: a review. J Struct Geol 44:25–53CrossRef
Zurück zum Zitat Zhang X, Spiers CJ (2005) Compaction of granular calcite by pressure solution at room temperature and effects of pore fluid chemistry. Int J Rock Mech Min Sci 42(7–8):950–960CrossRef Zhang X, Spiers CJ (2005) Compaction of granular calcite by pressure solution at room temperature and effects of pore fluid chemistry. Int J Rock Mech Min Sci 42(7–8):950–960CrossRef
Zurück zum Zitat Zhang X, Spiers CJ, Peach CJ (2010) Compaction creep of wet granular calcite by pressure solution at 28 °C to 150 °C. J Geophys Res 115:1–18CrossRef Zhang X, Spiers CJ, Peach CJ (2010) Compaction creep of wet granular calcite by pressure solution at 28 °C to 150 °C. J Geophys Res 115:1–18CrossRef
Zurück zum Zitat Zhu W, Baud P, Wong TF (2010) Micromechanics of cataclastic pore collapse in limestone. J Geophys Res 115(B4):1–17CrossRef Zhu W, Baud P, Wong TF (2010) Micromechanics of cataclastic pore collapse in limestone. J Geophys Res 115(B4):1–17CrossRef
Zurück zum Zitat Zimmerman RW (1991) Compressibility of sandstones. Elsevier, New York Zimmerman RW (1991) Compressibility of sandstones. Elsevier, New York
Zurück zum Zitat Zimmerman RW, Somerton WH, King MS (1986) Compressibility of porous rocks. J Geophys Res 91(B12):12765–12777CrossRef Zimmerman RW, Somerton WH, King MS (1986) Compressibility of porous rocks. J Geophys Res 91(B12):12765–12777CrossRef
Metadaten
Titel
Thermo-mechanical Properties of Upper Jurassic (Malm) Carbonate Rock Under Drained Conditions
verfasst von
Liang Pei
Guido Blöcher
Harald Milsch
Günter Zimmermann
Ingo Sass
Ernst Huenges
Publikationsdatum
07.09.2017
Verlag
Springer Vienna
Erschienen in
Rock Mechanics and Rock Engineering / Ausgabe 1/2018
Print ISSN: 0723-2632
Elektronische ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-017-1313-0

Weitere Artikel der Ausgabe 1/2018

Rock Mechanics and Rock Engineering 1/2018 Zur Ausgabe