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128   Applied Petroleum Geomechanics


          References
          Al-Ajmi, A., Zimmerman, R.W., 2005. Relation between the Mogi and the Coulomb
             failure criteria. Int. J. Rock Mech. Min. Sci. 42, 431e439.
          Amendt, D., Wenning, Q., Busetti, S., 2013. Mechanical characterization in unconven-
             tional reservoirs: a facies based methodology. SPWLA 54th Annual Logging Symp.
             Held in New Orleans, LA.
          Barton, N., 1976. The shear strength of rock and rock joints. Int. J. Rock Mech. Min. Sci.
             Geomech. Abstr. 13, 255e279.
          Barton, N., 2013. Shear strength criteria for rock, rock joints, rockfill and rock masses:
             problems and some solutions. J. Rock Mech. Geotech. Eng. 5 (4), 249e261.
          Bons, P., Elburg, M., Gomez-Rivas, E., 2012. A review of the formation of tectonic veins
             and their microstructures. J. Struct. Geol. 43, 33e62.
          Bradford,L.D.R., Fuller, J.,Thompson, P.J.,Walsgrove, T.R.,1998.Benefits of assessing
             the solids production risk in a North Sea reservoir using elasto-plastic modeling.
             SPE/ISRM-47360, Eurock’98 held in Trondheim Norway, pp. 261e269.
          Brady, B.H.G., Brown, E.T., 2004. Rock Mechanics for Underground Mining. Springer.
          Chang, C., Zoback, M., Khaksar, A., 2006. Empirical relations between rock strength and
             physical properties in sedimentary rocks. J. Pet. Sci. Eng. 51, 223e237.
          Dohmen, T., Zhang, J., Li, C., Blangy, J.P., Simon, K.M., Valleau, D.N., Ewles, J.D.,
             Morton, S., Checkles, S., 2013. A new surveillance method for delineation of depletion
             using microseismic and its application to development of unconventional reservoirs.
             Paper SPE 166274 presented at the SPE Annual Technology Conference in New
             Orleans, Louisiana.
          Dohmen, T., Zhang, J., Barker, L., Blangy, J.P., 2017. Microseismic magnitudes and b-
             values for delineating hydraulic fracturing and depletion. SPE J. 22 (5), 1624e1633.
             SPE-186096.
          Donath, F.A., 1964. Strength variation and deformational behavior in anisotropic rock. In:
             Judd, W.R. (Ed.), State of Stress in the Earth’s Crust. American Elsevier, New York,
             pp. 281e297.
          Drucker, D.C., Prager, W., 1952. Soil mechanics and plastic analysis or limit design.
             Q. Appl. Math. 10, 157e165.
          Eberhardt, E., Steadb, D., Stimpson, B., 1999. Quantifying progressive pre-peak brittle
             fracture damage in rock during uniaxial compression. Int. J. Rock Mech. Min. Sci. 36,
             361e380.
          Engelder, T., Fischer, M.P., 1994. Influence of poroelastic behavior on the magnitude of
             minimum horizontal stress, S h , in overpressured parts of sedimentary basins. Geology 22,
             949e952.
          Ewy, R.T., 1998. Wellbore stability prediction using a modified Lade criterion. Paper
             SPE-47251 presented at SPE/ISRM Eurock’98 held in Trondheim, Norway.
          Fjær, E., Nes, O.-M., 2013. Strength anisotropy of Mancos shale. ARMA 13e519, the
             47th US Rock Mechanics/Geomechanics Symposium held in San Francisco, CA, USA.
          Fjær, E., Holt, R.M., Horsrud, P., Raaen, A.M., Risnes, R., 2008. Petroleum Related
             Rock Mechanics. Elsevier, Amsterdam.
          Golubev, A.A., Rabinovich, G.Y., 1976. Resultaty primeneia appartury akusticeskogo
             karotasa dlja predeleina proconstych svoistv gornych porod na mestorosdeniaach tver-
             dych isjopaemych. Prikl. Geofiz. Moskva 73, 109e116.
          Griffith, A.A., 1921. The phenomena of rupture and flow in solids. Phil. Trans. Roy. Soc.
             Lond. A221, 163e198.
          Haimson, B., 2006. True triaxial stresses and the brittle fracture of rock. Pure Appl. Geo-
             phys. 163, 1101e1130.
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