Civil Engineering Reference
In-Depth Information
Michelis, P.: A true triaxial cell for low and high-pressure experiments. Int. J. Rock Mech. Min. Sci. &
Geomech. Abstr. 22, 183 - 188, 1985a.
Michelis, P.: Polyaxial yielding of granular rock. J. Eng. Mech. 111(8), 1049 - 1066, 1985b.
Michelis, P.: True triaxial cyclic behavior of concrete and rock in compression. Int. J. Plasticity 3(2), 249
- 270, 1987.
Miehe, R.; Harborth, B.; Klarr, K.; Ostrowski, L.: Permeabilitätsbestimmungen in Staßfurt-Steinsalz in
Abhängigkeit von einer Streckenauffahrung. Kali und Steinsalz, 11(5/6), 175 - 184, 1993.
Milne, D.; Potvin, Y.: Empirical cable bolt support design. In: Proc. Int. Symp. Rock Support, Sudbury,
1992.
Min, K. B.; Jing, L.; Stephansson, O.: Determining the equivalent permeability tensor for fractured rock
masses using a stochastic REV approach: method and application to the field data from Sellafield,
U. K. Hydrogeol. J. 12, 497 - 510, 2004a.
Min, K. B.; Rutqvist, J.; Tsang, C.-F.; Jing, L.: Stress-dependent permeability of fractured rock masses:
A numerical study. Int. J. Rock Mech. Min. Sci. 41, 1191 - 1210, 2004b.
Minkley, W.; Menzel, W.; Konietzky, H.; Te Kamp, L.: A visco-elasto-plastic softening model and its ap-
plication for solving static and dynamic stability problems in potash mining. In: Proc. 2 st Int. FLAC
Symp. Numerical Modeling in Geomechanics, Lyon, 2001.
Minkley, W.; Mühlbauer, J.: Constitutive models to describe the mechanical behavior of salt rocks and
the imbedded weakness planes. In: Proc. 6 th Conf. on the Mechanical Behavior of Salt, Hannover,
2007.
Minova Carbotech: Product information.
Mogi, K.: Fracture and flow of rocks under high triaxial compression. J. Geophys. Res. 72, 5117 - 5131,
1967.
Mogi, K.: Effect of the intermediate principle stress on rock failure. J. Geophys. Res. 76, 1255 - 1269,
1971.
Müller, K. E. H.: Zur Definition des Durchtrennungsgrades. Rock Mech. Suppl. 3, 17 - 29, 1974.
Müller, L.: Der Kluftkörper. Geologie und Bauwesen 18, 52 - 60, 1950.
Müller, L.: Der Felsbau, Vol. I, Theoretischer Teil, Felsbau über Tage. Enke: Stuttgart, 1963.
Munson, D. E.; Dawson, P. R.: Constitutive model for the low temperature creep of salt (with application
to WIPP). SAND-79-1853, Sandia Nat. Lab., Albuquerque, 1979.
Munson, D. E.; Dawson, P. R.: Salt constitutive modeling using mechanism maps. In: Proc. 1 st Conf. on
the Mechanical Behavior of Salt, Penn State University 1981. Trans. Tech. Publ., Clausthal, 1984.
Murawski, H.: Geologisches Wörterbuch (8 th Edition). Enke: Stuttgart, 1983.
Murrell, S. A.: A criterion for brittle fracture of rocks and concrete under triaxial stress, and the effect
of pore pressure on the criterion. In: Proc. 5 th U. S. Symp. Rock Mech., University of Minnesota,
Minneapolis, 1963.
Myer, L. R.: Fractures as collections of cracks. Int. J. Rock Mech. Min. Sci. 37, 231 - 243, 2000.
Natau, O.: Theorie zur Bestimmung des Spannungstensors im Gebirge durch Messung von Normalspan-
nungen nach der Kompensationsmethode in Bohrstollen. In: Proc. ISRM Symp. Untertagebau,
Luzern, 1972.
Natau, O.; Fröhlich, B.; Mutschler, T.: Recent developments of the large scale triaxial test. In: Proc. 5 th
ISRM Congr., Theme A, Melbourne, 1983.
NATS (New Austrian Torket System): Applikation von Spritzbeton, 1998.
Niandou, H.; Shao, J. F.; Henry, J. P.; Fourmaintraux, D.: Laboratory investigation of the mechanical
behavior of Tournemire shale. Int. J. Rock Mech. Min. Sci. 34, 3 - 16, 1997.
Nicholson, G. A.; Bieniawski, Z. T.: A nonlinear deformation modulus based on rock mass classification.
Int. J. Min. Geol. Eng. 8, 181 - 202, 1990.
Search WWH ::




Custom Search