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REFERENCES
Ortlepp, W. D. (1994) Grouted rock-studs as rockburst support: a simple design approach and an effective
test procedure. J. S. Afr. Inst. Min. Metall., 94(2): 47–63.
Ortlepp, W. D. (1997) Rock Fracture and Rockbursts – An Illustrative Study. S. Afr. Inst. Min. Metall.:
Johannesburg.
Ortlepp, W. D. and Gay, N. C. (1984) Performance of an experimental tunnel subjected to stresses ranging
from 50 MPa to 230 MPa. Design and Performance of Underground Excavations, ISRM Symposium,
Cambridge (eds E. T. Brown and J. A. Hudson), 337–46. British Geotech. Soc.: London.
Otter, J. R. H., Cassell, A. C. and Hobbs, R. E. (1966) Dynamic relaxation. Proc. Instn Civ. Engrs, 35:
633–65.
Owen, G. N. and Scholl, R. E. (1981) Earthquake Engineering of Large Underground Structures.
FHWA/RD-80–195, 171–4. U. S. Department of Transportation: Washington, DC.
Paillet, F. L. and Kim, K. (1987) Character and distribution of borehole breakouts and their relation to in
situ stress in deep Columbia River basalts. J. Geophys. Res., 92(B7): 6223–34.
Panet, M. (1995) Calcul des Tunnels par la Methode de Convergence- Confinement. Press de l’Ecole
Nationale des Ponts et Chaussees: Paris.
Paris, P. C. and Sih, G. C. (1965) Stress analysis of cracks. Fracture Toughness Testing and its Applications,
Spec. Tech. Publn. 381, 30–81. Am. Soc. Test. Mats: Philadelphia.
Pariseau, W.G. and Pfleider, E. P. (1968) Soil plasticity and the movement of material in ore passes. Trans.
Soc. Min. Engrs, AIME, 241(1): 42 56.
Pariseau, W. G., McDonald, M. M. and Hill, J. R. M. (1973) Support performance prediction for hydraulic
fills. Mine Filling, Proc. Jubilee Symp. Mine Filling, Mount Isa, 213–19. North West Qld Branch, Aust.
Inst. Min. Metall.: Mount Isa.
Park, D. W. and Gall, V. (1989) Supercomputer assisted three-dimensional finite element analysis
of a longwall panel. Rock Mechanics as a Guide for Efficient Utilization of Natural Resources,
Proc. 30th U. S. Rock Mech. Symp., Morgantown (ed. A. W. Khair), 133–40. A. A. Balkema:
Rotterdam.
Paterson, M. S. (1978) Experimental Rock Deformation – the Brittle Field. Springer: Berlin.
Patton, F. D. (1966) Multiple modes of shear failure in rock. Proc. 1st. Congr., Int. Soc. Rock Mech., Lisbon,
1: 509–13.
Pattrick, K. W. (1984) The instrumentation of seismic networks at Doornfontein Gold Mine. Rockbursts
and Seismicity in Mines (eds N. C. Gay and E. H. Wainwright), 337–40. S. Afr. Inst. Min. Metall.:
Johannesburg.
Peck, R. B. (1969) Advantages and limitations of the observational method in applied soil mechanics.
G´ eotechnique, 19(2): 171–87.
Pells, P. J. N. (1974) The behaviour of fully bonded rockbolts. Advances in Rock Mechanics, Proc. 3rd
Congr., Int. Soc. Rock Mech., Denver, 2A: 1212–17. Nat. Acad. Sci.: Washington, DC.
Peng, S. S. (1992) Surface Subsidence Engineering. Society for Mining, Metallurgy and Exploration:
Littleton, Colorado.
Peng, S. S. and Chiang, H. S. (1984) Longwall Mining. Wiley: New York.
Perrett, W. R. (1972) Seismic source energies of underground nuclear explosions. Bull. Seism. Soc. Am.,
62: 763–74.
Phillips, F. C. (1971) The Use of the Stereographic Projection in Structural Geology, 3rd edn. Edward
Arnold: London.
Piggott, R. J. and Eynon, P. (1978) Ground movements arising from the presence of shallow abandoned
mine workings. Large Ground Movements and Structures (ed. J. D. Geddes), 749–80. Pentech: London.
Pillar, C. L. (1981) A comparison of block caving methods. Design and Operation of Caving and Sublevel
Stoping Mines (ed. D. R. Stewart), 87–97. Soc. Min. Engrs, AIME: New York.
Potvin, Y., Hudyma, M. R. and Miller, H. D. S. (1989) Design guidelines for open stope support. CIM
Bull., 82(926): 53–62.
Poulos, H. G. and Davis, E. H. (1974) Elastic Solutions for Soil and Rock Mechanics. Wiley: New York.
Prager, W. (1959) An Introduction to Plasticity. Addison-Wesley: Reading, Mass.
Price, N. J. (1966) Fault and Joint Development in Brittle and Semi-Brittle Rock. Pergamon: Oxford.
Price, N.J. and Cosgrove, J. W. (1990) Analysis of Geological Structures. Cambridge University Press:
Cambridge.
Priest, S. D. (1980) The use of inclined hemisphere projection methods for the determination of kinematic
feasibility, slide direction and volume of rock blocks. Int. J. Rock Mech. Min. Sci. & Geomech. Abstr.,
17(1): 1–23.
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