Page 616 - Rock Mechanics For Underground Mining
P. 616
REFERENCES
Gustafsson, P. (1998) Waste Rock Content Variations during Gravity Flow in Sublevel Caving. Analysis of
Full-scale Simulations and Numerical Modelling. Doctoral thesis No 1998:10, Div. Rock Engng, Lule˚a
University of Technology, Lule˚a.
Haas, C, J. (1981) Analysis of rock bolting to prevent shear movement in fractured ground. Min. Engng,
June: 698–704.
Hadjigeorgiou, J. and Charette, F. (2001) Rock bolting for underground excavations. Underground Mining
Methods: Engineering Fundamentals and International Case Studies (eds W. A. Hustrulid and R. L.
Bullock), 547–54. Society for Mining, Metallurgy and Exploration: Littleton, Colorado.
Hagan, T. O. (1988) Mine design strategies to combat rockbursting at a deep South African gold mine.
Key Questions in Rock Mechanics, Proc. 29th U. S. Rock Mech. Symp., Minneapolis (eds P. A. Cundall,
R. L. Sterling and A. M. Starfield), 249–60. A. A. Balkema: Rotterdam.
Haile, A. T. and Le Bron, K. (2001) Simulated rockburst experiment – evaluation of rock bolt reinforcement
performance. J. S. Afr. Inst. Min. Metall., 101(5): 247–51.
Haimson, B. C. (1978) The hydrofracturing stress measuring method and recent field trials. Int. J. Rock
Mech. Min. Sci. & Geomech. Abstr., 15(4): 167–78.
Haimson, B. C. and Cornet, F. H. (2003) ISRM suggested methods for rock stress estimation – Part 3:
Hydraulic fracturing (HF) and/or hydraulic testing of pre-existing fractures (HTPF). Int. J. Rock Mech.
Min. Sci., 40(7–8): 1011–20.
Hajiabdolmajid, V., Kaiser, P. K. and Martin, C. D. (2002) Modelling brittle rock failure. Int. J. Rock Mech.
Min. Sci., 39(6): 731–41.
Hamrin, H. O. (1982) Choosing an underground mining method. Underground Mining Methods Handbook
(ed. W. A. Hustrulid), 88–112. AIME: New York.
Hamrin, H. (2001). Underground mining methods and applications. Underground Mining Methods: Engi-
neering Fundamentals and International Case Studies (eds W. A. Hustrulid and R. L. Bullock), 3–14.
Society for Mining, Metallurgy and Exploration: Littleton, Colorado.
Hanks, T. C. and Kanamori, H. (1979) A moment amplitude scale. J. Geophys. Res., 84: 2348–50.
Hanks, T. C. and Wyss, M. (1972) The use of body-wave spectra in the determination of seismic source
parameters. Bull. Seism. Soc. Am., 62: 561–89.
Hardy, M. P. (1973) Fracture Mechanics Applied to Rock. PhD thesis, University of Minnesota, Minneapo-
lis.
Hardy, M. P. and Agapito, J. F. T. (1977) Pillar design in underground oil shale mines. Design Methods in
Rock Mechanics, Proc. 16th U. S. Symp. Rock Mech., Minneapolis (eds C. Fairhurst and S. L. Crouch),
257–66. ASCE: New York.
Harries. G. (1977) Theory of blasting. Drilling and Blasting Technology. Aust. Min. Foundn: Adelaide.
Harries, N. J. (2001) Rock Mass Characterisation for Cave Mine Engineering. PhD thesis, University of
Queensland, Brisbane.
Hasegawa, H. S., Wetmiller, R. J. and Gendzwill, D. J. (1989) Induced seismicity in mines in Canada – an
overeview. Pure Appl. Geophys., 129(3–4): 423–53.
Hatherly, P. and Medhurst, T. (2000) Quantitative geotechnical data by full waveform sonic logging. Proc.
Bowen Basin Symp. 2000 – The New Millennium – Geology, Rockhampton (ed. J. W. Beeston), 91–96.
Geol. Soc. Aust. Inc.: Sydney.
Hatheway, A. W. (1968) Subsidence at San Manuel Copper Mine, Pinal Country, Arizona. Engineering
Geology Case Histories, Geol. Soc. Am., No 6: 65–81.
Hawkes, I. and Hooker, V. E. (1974) The vibrating wire stressmeter. Advances in Rock Mechanics, Proc.
3rd Congr., Int. Soc. Rock Mech., Denver, 2A: 439–44. Nat. Acad. Sci.: Washington, DC.
Hawkes, I. and M. Mellor (1970) Uniaxial testing in rock mechanics laboratories. Engng Geol., 4(3):
177–285.
Hayes. P. (2000) Moonee Colliery: renewing the economic viability of a mine using microseismic and
hydraulic fracturing techniques in massive roof conditions. Proc. 19th Conf. Ground Control in Mining,
Morgantown (eds S. S. Peng and C. Mark), 38–44.
Hebblewhite, B. K. (2001) Personal communication.
Hebblewhite, B. K. (2003) Northparkes findings – the implications for geotechnical professionals in the
mining industry. Ground Control in Mining: Technology and Practice, Proc. 1st Australas. Ground
Control in Mining Conf., Sydney (ed. B. K. Hebblewhite), 3–10. Univ. New South Wales: Sydney.
Hebblewhite, B. K. and Lu, T. (2004) Geomechanical behaviour of laminated, weak coal mine roof
strata and the implications for a ground reinforcement strategy. Int. J. Rock Mech. Min. Sci., 41(1):
147–57.
598

