Skip to main content
Top
Published in: Rock Mechanics and Rock Engineering 3/2015

01-05-2015 | Original Paper

A Laboratory-Testing-Based Study on the Strength, Deformability, and Dilatancy of Carbonate Rocks at Low Confinement

Authors: G. Walton, J. Arzúa, L. R. Alejano, M. S. Diederichs

Published in: Rock Mechanics and Rock Engineering | Issue 3/2015

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

A servo-controlled testing setup was used to investigate the stress–strain behaviour of three carbonate rocks into the post-failure region. A series of uniaxial and triaxial tests on Indiana limestone, Carrara marble, and Toral de Los Vados limestone have been performed, gathering information on the evolution of the strength parameters and stiffness of these rocks, as well as on their post-yield dilatational properties. The Carrara marble was found to be extremely ductile, even under uniaxial conditions, whereas the Indiana limestone and Toral de Los Vados limestone were more brittle. The Indiana limestone, which was the weakest rock tested, showed a notable transition to more ductile failure modes, even at modest confinements on the order of 10 MPa; this transition was reflected in the volumetric strain evolution of the rock in the form of a transition of the dilation angle towards lower, less variable values. All of the rocks tested were found to be consistent with a cohesion-weakening-friction-strengthening model for yield, with the peak friction angle of both the Carrara marble and Indiana limestone being attained after peak strength. The evolution of stiffness was also considered as a function of accumulated plastic strain. Each rock decreased in stiffness significantly following the onset of yield, and eventually reached a near-constant residual stiffness on the order of 50 % of the initial elastic stiffness.

Dont have a licence yet? Then find out more about our products and how to get one now:

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!

Literature
go back to reference Alejano LR, Alonso E (2005) Considerations of the dilatancy angle in rocks and rock masses. Int J Rock Mech Min Sci 42:481–507CrossRef Alejano LR, Alonso E (2005) Considerations of the dilatancy angle in rocks and rock masses. Int J Rock Mech Min Sci 42:481–507CrossRef
go back to reference Alonso E, Alejano LR, Varas F, Fdez-Manin G, Carranza-Torres C (2003) Ground reaction curves for tunnels in strain-softening rock masses. Int J Numer Anal Meth Geomech 27:1153–1185CrossRef Alonso E, Alejano LR, Varas F, Fdez-Manin G, Carranza-Torres C (2003) Ground reaction curves for tunnels in strain-softening rock masses. Int J Numer Anal Meth Geomech 27:1153–1185CrossRef
go back to reference Archambault G, Roleau A, Daigneault R, Flamand R (1993) Progressive failure of rock masses by a self-similar anastomosing process of rupture at all scales and its scale effects on their shear strength. The Second International Workshop on Scale Effects in Rock Masses, Lisbon, pp 133–141 Archambault G, Roleau A, Daigneault R, Flamand R (1993) Progressive failure of rock masses by a self-similar anastomosing process of rupture at all scales and its scale effects on their shear strength. The Second International Workshop on Scale Effects in Rock Masses, Lisbon, pp 133–141
go back to reference Arzúa J, Alejano LR (2013) Dilation in granite according to servo-controlled strength tests. Int J Rock Mech Min Sci 61:43–56 Arzúa J, Alejano LR (2013) Dilation in granite according to servo-controlled strength tests. Int J Rock Mech Min Sci 61:43–56
go back to reference Arzúa J, Alejano LR, Walton G (2014) Strength and dilation of jointed granite specimens in servo-controlled triaxial tests. Int J Rock Mech Min Sci 69:93–104 Arzúa J, Alejano LR, Walton G (2014) Strength and dilation of jointed granite specimens in servo-controlled triaxial tests. Int J Rock Mech Min Sci 69:93–104
go back to reference Besuelle P, Rudnicki JW (2004) Localization: Shear bands and compaction bands. Mechanics of fluid-saturated rocks. Elsevier, Boston, pp 219–321 Besuelle P, Rudnicki JW (2004) Localization: Shear bands and compaction bands. Mechanics of fluid-saturated rocks. Elsevier, Boston, pp 219–321
go back to reference Brace WF, Paulding BW, Scholz C (1966) Dilatancy in the fracture of crystalline rocks. J Geophys Res 71(16):3939–3953CrossRef Brace WF, Paulding BW, Scholz C (1966) Dilatancy in the fracture of crystalline rocks. J Geophys Res 71(16):3939–3953CrossRef
go back to reference Cargill JS, Shakoor A (1990) Evaluation of empirical methods for measuring the uniaxial compressive strength of rock. Int J Rock Mech Min Sci Geomech Abstr 27(6):495–503CrossRef Cargill JS, Shakoor A (1990) Evaluation of empirical methods for measuring the uniaxial compressive strength of rock. Int J Rock Mech Min Sci Geomech Abstr 27(6):495–503CrossRef
go back to reference Chandler NA (2013) Quantifying long-term strength and rock damage properties from plots of shear strain versus volume strain. Int J Rock Mech Min Sci 59:105–110 Chandler NA (2013) Quantifying long-term strength and rock damage properties from plots of shear strain versus volume strain. Int J Rock Mech Min Sci 59:105–110
go back to reference Cipullo A, White W, Lee IK (1985) Computer controlled volumetric strain measurements in metadolerite. Bull Eng Geol Environ 32(1):55–65 Cipullo A, White W, Lee IK (1985) Computer controlled volumetric strain measurements in metadolerite. Bull Eng Geol Environ 32(1):55–65
go back to reference Corkum AG, Lorig LJ, DeGagne DO (2012) Continuum representation of brittle rock failure bulking-induced displacements around tunnels. In: 46th ARMA Rock Mechanics/Geomechanis Symposium, Chicago, Illinois Corkum AG, Lorig LJ, DeGagne DO (2012) Continuum representation of brittle rock failure bulking-induced displacements around tunnels. In: 46th ARMA Rock Mechanics/Geomechanis Symposium, Chicago, Illinois
go back to reference Crouch SL (1970) Experimental determination of volumetric strain in failed rock. Int J Rock Mech Min Sci Geomech Abstr 7(4):231–241 Crouch SL (1970) Experimental determination of volumetric strain in failed rock. Int J Rock Mech Min Sci Geomech Abstr 7(4):231–241
go back to reference Diederichs MS (1999) Instability of hard rockmasses: the role of tensile damage and relaxation (Unpublished PhD). University of Waterloo, Waterloo Diederichs MS (1999) Instability of hard rockmasses: the role of tensile damage and relaxation (Unpublished PhD). University of Waterloo, Waterloo
go back to reference Diederichs MS (2003) Rock fracture and collapse under low confinement conditions. Rock Mech Rock Eng 36:339–381CrossRef Diederichs MS (2003) Rock fracture and collapse under low confinement conditions. Rock Mech Rock Eng 36:339–381CrossRef
go back to reference Diederichs MS, Martin CD (2010) Measurement of spalling parameters from laboratory testing. In: Zhao, Labiouse, Dudt, Mathier (eds) Rock mechanics in civil and environmental engineering. Taylor & Francis Group, London Diederichs MS, Martin CD (2010) Measurement of spalling parameters from laboratory testing. In: Zhao, Labiouse, Dudt, Mathier (eds) Rock mechanics in civil and environmental engineering. Taylor & Francis Group, London
go back to reference Diederichs MS, Kaiser PK, Eberhardt E (2004) Damage initiation and propagation in hard rock during tunnelling and the influence of near-face stress rotation. Int J Rock Mech Min Sci 41:785–812CrossRef Diederichs MS, Kaiser PK, Eberhardt E (2004) Damage initiation and propagation in hard rock during tunnelling and the influence of near-face stress rotation. Int J Rock Mech Min Sci 41:785–812CrossRef
go back to reference Diederichs M, Damjanac B, Jensen M, Lam T, Martin D, McCreath D (2013) Ultra-long-term geomechanics design for a deep geological repository in sedimentary rock. In: 47th US Rock Mechanics/Geomechanics Symposium, San Francisco Diederichs M, Damjanac B, Jensen M, Lam T, Martin D, McCreath D (2013) Ultra-long-term geomechanics design for a deep geological repository in sedimentary rock. In: 47th US Rock Mechanics/Geomechanics Symposium, San Francisco
go back to reference Dunham RJ (1962) Classification of carbonate rocks according to depositional texture. Am Assoc Pet Geol Mem 1:108–121 Dunham RJ (1962) Classification of carbonate rocks according to depositional texture. Am Assoc Pet Geol Mem 1:108–121
go back to reference Edmond JM, Paterson MS (1972) Volume changes during the deformation of rocks at high pressures. Int J Rock Mech Min Sci 9:161–182CrossRef Edmond JM, Paterson MS (1972) Volume changes during the deformation of rocks at high pressures. Int J Rock Mech Min Sci 9:161–182CrossRef
go back to reference Elliot GM, Brown ET (1985) Yield of a soft, high porosity rock. Geotechnique 35(4):413–423CrossRef Elliot GM, Brown ET (1985) Yield of a soft, high porosity rock. Geotechnique 35(4):413–423CrossRef
go back to reference Farmer I (1983) Engineering behaviour of rocks, 2nd edn. Chapman and Hall, New YorkCrossRef Farmer I (1983) Engineering behaviour of rocks, 2nd edn. Chapman and Hall, New YorkCrossRef
go back to reference Fredrich JT, Evans B, Wong T (1989) Micromechanics of the brittle to plastic transition in Carrara marble. J Geophys Res 94:4129–4145CrossRef Fredrich JT, Evans B, Wong T (1989) Micromechanics of the brittle to plastic transition in Carrara marble. J Geophys Res 94:4129–4145CrossRef
go back to reference Fredrich JT, Evans B, Wong T (1990) Effect of grain size on brittle and semibrittle strength: implications for micromechanical modelling of failure in compression. J Geophys Res 95:10907–10920CrossRef Fredrich JT, Evans B, Wong T (1990) Effect of grain size on brittle and semibrittle strength: implications for micromechanical modelling of failure in compression. J Geophys Res 95:10907–10920CrossRef
go back to reference Griggs DT, Turner FJ, Heard HC (1960) Deformation of rocks at 500 to 800 degrees C. Geol Soc Am Mem 79:39–104CrossRef Griggs DT, Turner FJ, Heard HC (1960) Deformation of rocks at 500 to 800 degrees C. Geol Soc Am Mem 79:39–104CrossRef
go back to reference Hajiabdolmajid V, Kaiser PK, Martin CD (2002) Modelling brittle failure of rock. Int J Rock Mech Min Sci 39:431–741CrossRef Hajiabdolmajid V, Kaiser PK, Martin CD (2002) Modelling brittle failure of rock. Int J Rock Mech Min Sci 39:431–741CrossRef
go back to reference Hart DJ, Wang HF (1995) Laboratory measurements of a complete set of poroelastic moduli for Berea sandstone and Indiana limestone. J Geophys Res 100:17741–17751CrossRef Hart DJ, Wang HF (1995) Laboratory measurements of a complete set of poroelastic moduli for Berea sandstone and Indiana limestone. J Geophys Res 100:17741–17751CrossRef
go back to reference Hoagland RG, Hahn GT, Rosenfield AR (1973) Influence of microstructure on fracture propagation in rock. Rock Mech 5:77–106CrossRef Hoagland RG, Hahn GT, Rosenfield AR (1973) Influence of microstructure on fracture propagation in rock. Rock Mech 5:77–106CrossRef
go back to reference Hoek E, Carranza-Torres C, Corkum B (2002) Hoek-brown failure criterion—2002 edition. N Am Rock Mech Soc Meet:267–273 Hoek E, Carranza-Torres C, Corkum B (2002) Hoek-brown failure criterion—2002 edition. N Am Rock Mech Soc Meet:267–273
go back to reference Howarth DF, Rowlands JC (1987) Quantitative assessment of rock texture and correlation with drillability and strength properties. Rock Mech Rock Eng 20:57–85CrossRef Howarth DF, Rowlands JC (1987) Quantitative assessment of rock texture and correlation with drillability and strength properties. Rock Mech Rock Eng 20:57–85CrossRef
go back to reference Hudson JA, Brown ET, Fairhurst C (1971) Optimizing the control of rock failure in servo-controlled laboratory tests. Rock Mech 3(4):217–224CrossRef Hudson JA, Brown ET, Fairhurst C (1971) Optimizing the control of rock failure in servo-controlled laboratory tests. Rock Mech 3(4):217–224CrossRef
go back to reference Itasca Consulting Group (2011) FLAC Version 7.0—theory and Background (5th edn), Minneapolis, Minnesota Itasca Consulting Group (2011) FLAC Version 7.0—theory and Background (5th edn), Minneapolis, Minnesota
go back to reference Ji Y, Baud P, Wong T (2012) Characterization of pore geometry of indiana limestone in relation to mechanical compaction. Oil Gas Sci Technol 67(5):753–775CrossRef Ji Y, Baud P, Wong T (2012) Characterization of pore geometry of indiana limestone in relation to mechanical compaction. Oil Gas Sci Technol 67(5):753–775CrossRef
go back to reference Labuz JF, Biolzi L (1991) Class I vs. class II stability: a demonstration of size effect. Int J Rock Mech Min Sci 28:199–205CrossRef Labuz JF, Biolzi L (1991) Class I vs. class II stability: a demonstration of size effect. Int J Rock Mech Min Sci 28:199–205CrossRef
go back to reference Lajtai EZ (1998) Microscopic fracture processes in a granite. Rock Mech Rock Eng 31(4):237–250CrossRef Lajtai EZ (1998) Microscopic fracture processes in a granite. Rock Mech Rock Eng 31(4):237–250CrossRef
go back to reference Loew S, Ziegler H, Keller F (2000) ALPTRANSIT: Engineering geology of the world’s longest tunnel system. In: GeoEng2000, an International Conference on Geotechnical and Geological Engineering, Melbourne, vol 1, pp 927–937 Loew S, Ziegler H, Keller F (2000) ALPTRANSIT: Engineering geology of the world’s longest tunnel system. In: GeoEng2000, an International Conference on Geotechnical and Geological Engineering, Melbourne, vol 1, pp 927–937
go back to reference Martin CD (1997) Seventeenth Canadian geotechnical colloquium: the effect of cohesion loss and stress path on brittle rock strength. Can Geotech J 34:698–725CrossRef Martin CD (1997) Seventeenth Canadian geotechnical colloquium: the effect of cohesion loss and stress path on brittle rock strength. Can Geotech J 34:698–725CrossRef
go back to reference Martin CD, Chandler NA (1994) The progressive fracture of lac du bonnet granite. Int J Rock Mech Min Sci Geomech Abstr 31:643–659CrossRef Martin CD, Chandler NA (1994) The progressive fracture of lac du bonnet granite. Int J Rock Mech Min Sci Geomech Abstr 31:643–659CrossRef
go back to reference Medhurst TP (1996) Estimation of the in situ and deformability of coal for engineering design, Ph.D. Thesis, University of Queensland Medhurst TP (1996) Estimation of the in situ and deformability of coal for engineering design, Ph.D. Thesis, University of Queensland
go back to reference Medhurst TP, Brown ET (1998) A study of the mechanical behaviour of coal for pillar design. Int J Rock Mech Min Sci 35(8):1087–1105CrossRef Medhurst TP, Brown ET (1998) A study of the mechanical behaviour of coal for pillar design. Int J Rock Mech Min Sci 35(8):1087–1105CrossRef
go back to reference Mogi K (1966) Pressure dependence of rock strength and transition from brittle fracture to ductile flow. Bull Earthq Res Inst 44:215–232 Mogi K (1966) Pressure dependence of rock strength and transition from brittle fracture to ductile flow. Bull Earthq Res Inst 44:215–232
go back to reference Olsson WA (1974) Grain size dependence of yield stress in marble. J Geophys Res 79(32):4859–4862CrossRef Olsson WA (1974) Grain size dependence of yield stress in marble. J Geophys Res 79(32):4859–4862CrossRef
go back to reference Ord A (1991) Deformation of rock: a pressure-sensitive, dilatant material. Pure appl Geophys 137:337–366CrossRef Ord A (1991) Deformation of rock: a pressure-sensitive, dilatant material. Pure appl Geophys 137:337–366CrossRef
go back to reference Peck L, Barton CC, Gordon RB (1985) Microstructure and the resistance of rock to tensile fracture. J Geophys Res 90:1533–1546 Peck L, Barton CC, Gordon RB (1985) Microstructure and the resistance of rock to tensile fracture. J Geophys Res 90:1533–1546
go back to reference Price AM, Farmer IW (1979) Application of yield models to rock. Int J Rock Mech Min Sci Geomech Abstr 16:157–159CrossRef Price AM, Farmer IW (1979) Application of yield models to rock. Int J Rock Mech Min Sci Geomech Abstr 16:157–159CrossRef
go back to reference Ramamurthy T (2001) Shear strength response of some geological materials in triaxial compression. Int J Rock Mech Min Sci 38:683–697CrossRef Ramamurthy T (2001) Shear strength response of some geological materials in triaxial compression. Int J Rock Mech Min Sci 38:683–697CrossRef
go back to reference Read HE, Hegemeier GA (1984) Strain softening of rock, soil and concrete—a review article. Mech Materials 3:271–294CrossRef Read HE, Hegemeier GA (1984) Strain softening of rock, soil and concrete—a review article. Mech Materials 3:271–294CrossRef
go back to reference Riedel JJ, Labuz JF (2007) Propagation of a shear band in sandstone. Int J Numer Anal Meth Geomech 31:1281–1299CrossRef Riedel JJ, Labuz JF (2007) Propagation of a shear band in sandstone. Int J Numer Anal Meth Geomech 31:1281–1299CrossRef
go back to reference Robinson RH (1959) The effect of pore and confining pressure on the failure process in sedimentary rocks. Colorado Sch Mines Q 54:177–199 Robinson RH (1959) The effect of pore and confining pressure on the failure process in sedimentary rocks. Colorado Sch Mines Q 54:177–199
go back to reference Rummel F, Fairhurst C (1970) Determination of the post-failure behaviour of brittle rock using a servo-controlled testing machine. Rock Mech Rock Eng 2(4):189–204CrossRef Rummel F, Fairhurst C (1970) Determination of the post-failure behaviour of brittle rock using a servo-controlled testing machine. Rock Mech Rock Eng 2(4):189–204CrossRef
go back to reference Schmertmann JH, Osterberg JO (1960) An experimental study of the development of cohesion and friction with axial strain in saturated cohesive soils. In: Research Conference on Shear Strength of Cohesive Soils, Boulder, CO, pp 643–694 Schmertmann JH, Osterberg JO (1960) An experimental study of the development of cohesion and friction with axial strain in saturated cohesive soils. In: Research Conference on Shear Strength of Cohesive Soils, Boulder, CO, pp 643–694
go back to reference Schmidt RA, Huddle CW (1977) Effect of confining pressure on fracture toughness of indiana limestone. Int J Rock Mech Min Sci Geomech Abstr 14:289–293CrossRef Schmidt RA, Huddle CW (1977) Effect of confining pressure on fracture toughness of indiana limestone. Int J Rock Mech Min Sci Geomech Abstr 14:289–293CrossRef
go back to reference Singh AB (1997) Study of rock fracture by permeability method. J Geotech Geoenviron Eng 123(7):601–608CrossRef Singh AB (1997) Study of rock fracture by permeability method. J Geotech Geoenviron Eng 123(7):601–608CrossRef
go back to reference Sture S, Ko HY (1978) Strain-softening of brittle geologic materials. Int J Numer Anal Meth Geomech 2:237–253CrossRef Sture S, Ko HY (1978) Strain-softening of brittle geologic materials. Int J Numer Anal Meth Geomech 2:237–253CrossRef
go back to reference Turner FJ, Griggs DT, Heard HC (1954) Experimental deformation of calcite crystals. Geol Soc Am Bull 65:883–934CrossRef Turner FJ, Griggs DT, Heard HC (1954) Experimental deformation of calcite crystals. Geol Soc Am Bull 65:883–934CrossRef
go back to reference Vajdova V, Baud P, Wong T (2004) Compaction, dilatancy, and failure in porous carbonate rocks. J Geophys Res 109 Vajdova V, Baud P, Wong T (2004) Compaction, dilatancy, and failure in porous carbonate rocks. J Geophys Res 109
go back to reference Varas F, Alonso E, Alejano LR, Fdez.-Manin G (2005) Study of bifurcation in the problem of unloading a circular excavation in a strain-softening material. Tunn Undergr Space Technol 20:311–322CrossRef Varas F, Alonso E, Alejano LR, Fdez.-Manin G (2005) Study of bifurcation in the problem of unloading a circular excavation in a strain-softening material. Tunn Undergr Space Technol 20:311–322CrossRef
go back to reference Vardoulakis I, Sulem J (1995) Birfurcation analysis in geomechanics. Blackie, Glasgow Vardoulakis I, Sulem J (1995) Birfurcation analysis in geomechanics. Blackie, Glasgow
go back to reference Vermeer PA, de Borst R (1984) Non-associated plasticity for soils, concrete, and rock. Heron 29(3) Vermeer PA, de Borst R (1984) Non-associated plasticity for soils, concrete, and rock. Heron 29(3)
go back to reference Walton G, Diederichs MS, Arzúa J (2014) A detailed look at pre-peak dilatancy in a granite—determining “plastic” strains from laboratory test data. Eurock 2014, Vigo, Spain Walton G, Diederichs MS, Arzúa J (2014) A detailed look at pre-peak dilatancy in a granite—determining “plastic” strains from laboratory test data. Eurock 2014, Vigo, Spain
go back to reference Wawersik WR (1975) Technique and apparatus for strain measurements on rock in constant confining pressure experiments. Rock Mech 7(4):231–241CrossRef Wawersik WR (1975) Technique and apparatus for strain measurements on rock in constant confining pressure experiments. Rock Mech 7(4):231–241CrossRef
go back to reference Wawersik WR, Brace WF (1971) Post-failure behaviour of a granite and diabase. Rock Mech 3(2):61–85CrossRef Wawersik WR, Brace WF (1971) Post-failure behaviour of a granite and diabase. Rock Mech 3(2):61–85CrossRef
go back to reference Wawersik WR, Fairhurst C (1970) A study of brittle rock fracture in laboratory compression experiments. Int J Rock Mech Min Sci 7(5):561–564CrossRef Wawersik WR, Fairhurst C (1970) A study of brittle rock fracture in laboratory compression experiments. Int J Rock Mech Min Sci 7(5):561–564CrossRef
go back to reference Zhao XG, Cai M (2010) A mobilized dilation angle model for rocks. Int J Rock Mech Min Sci 47:368–384CrossRef Zhao XG, Cai M (2010) A mobilized dilation angle model for rocks. Int J Rock Mech Min Sci 47:368–384CrossRef
go back to reference Zhao XG, Cai M, Cai M (2010) Considerations of rock dilation on modeling failure and deformation of hard rocks—a case study of the mine-by test tunnel in Canada. J Rock Mech Geotech Eng 2:338–349 Zhao XG, Cai M, Cai M (2010) Considerations of rock dilation on modeling failure and deformation of hard rocks—a case study of the mine-by test tunnel in Canada. J Rock Mech Geotech Eng 2:338–349
go back to reference Zheng Z, Cook NGW, Myer LR (1989) Stress induced microcrack geometry at failure in unconfined and confined axial compressive tests. US Rock Mech Symp 30:749–756 Zheng Z, Cook NGW, Myer LR (1989) Stress induced microcrack geometry at failure in unconfined and confined axial compressive tests. US Rock Mech Symp 30:749–756
Metadata
Title
A Laboratory-Testing-Based Study on the Strength, Deformability, and Dilatancy of Carbonate Rocks at Low Confinement
Authors
G. Walton
J. Arzúa
L. R. Alejano
M. S. Diederichs
Publication date
01-05-2015
Publisher
Springer Vienna
Published in
Rock Mechanics and Rock Engineering / Issue 3/2015
Print ISSN: 0723-2632
Electronic ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-014-0631-8

Other articles of this Issue 3/2015

Rock Mechanics and Rock Engineering 3/2015 Go to the issue