Optimization of cable bolting pattern for cut-and-fill stopes in a manganese mine using observational, empirical, and numerical modelling approaches

Canadian Institute of Mining, Metallurgy and Petroleum
M. R. Saharan A. K. Chakraborty A. Sinha N. K. Babar H. R. Kalihari C. P. N. Pathak
Organization:
Canadian Institute of Mining, Metallurgy and Petroleum
Pages:
6
File Size:
914 KB
Publication Date:
Jan 1, 2007

Abstract

A case study is presented on the optimization of cable bolting patterns in cut-and-fill stopes at the Chikla Mine, MOIL, India. Rock mass characterization, using Bieniawski’s RMR and Barton’s Q, indicated that the stopes lie in the “no supports required” to “spot bolting required” support categories. In contrast, the current practice of cable bolting in a 2.0 m by 2.0 m grid pattern for stope widths less than 12 m displays different results. Numerical modelling results are in line with the rock mass characterization study. It can be affirmed, as well, that no cable is carrying rock loads greater than 5 t. This fact is derived from observational behaviour of the crown pillar of an experimental stope with open stoping operations and hanging cables in the cut-and-fill stopes of the mine. An increase in the cable bolting grid spacing is, hence, recommended for implementation by mine management, based on the study described in subsequent sections. It is also suggested that the mine adopt the open stoping method, provided results of a rock mechanics instrumentation program in an experimental stope with a cable bolting grid of 2.5 m square are favourable.
Citation

APA: M. R. Saharan A. K. Chakraborty A. Sinha N. K. Babar H. R. Kalihari C. P. N. Pathak  (2007)  Optimization of cable bolting pattern for cut-and-fill stopes in a manganese mine using observational, empirical, and numerical modelling approaches

MLA: M. R. Saharan A. K. Chakraborty A. Sinha N. K. Babar H. R. Kalihari C. P. N. Pathak Optimization of cable bolting pattern for cut-and-fill stopes in a manganese mine using observational, empirical, and numerical modelling approaches. Canadian Institute of Mining, Metallurgy and Petroleum, 2007.

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