Prediction of mining conditions at depth in Kristineberg Mine, Sweden

The Institute of Materials, Minerals and Mining
A. Nystrom S. Sandstrom N. Krauland M. Board
Organization:
The Institute of Materials, Minerals and Mining
Pages:
9
File Size:
4614 KB
Publication Date:
Dec 1, 1995

Abstract

Several deep Swedish cut-and-fill mines experience severe ground control problems, including roof collapse and wall sloughing, as a result of variable rock quality and high in situ stresses. A project to examine the problem included two main areas. The first was prediction of mining conditions at depth and the adaptation of cut-and-fill mining to such conditions; the second was the assessment and improvement of support methods at present and future depths. Simple, elastic, mine-scale numerical models were used to optimise stope sequencing and more detailed, stope-scale models to simulate the failure processes around a stope and the interaction of rock mass and support. Kristineberg was chosen for testing and calibration of the predictive methods because of its long history of severe ground conditions and the large base of observational and monitoring data available for comparison. Horizontal cut and fill was found technically suitable to depths beyond 1 000 m and economically viable if ore value covers support costs. Stability can be achieved with the present support technology down to 1 000 m but the 7-strand 15.2 mm cables have poor deformation properties (5% failure strain) compared with rebar rock bolts (17%). Reducing the intervals between levels from 100 m to 50 m will cut support costs and improve production reliability and capacity. Simulation of sill-pillar mining indicated that conditions would be most severe when pillar height was reduced to 15-20 m; mining of a sill pillar has been carried out successfully to the last 3 m, whose extraction is planned for the near future
Citation

APA: A. Nystrom S. Sandstrom N. Krauland M. Board  (1995)  Prediction of mining conditions at depth in Kristineberg Mine, Sweden

MLA: A. Nystrom S. Sandstrom N. Krauland M. Board Prediction of mining conditions at depth in Kristineberg Mine, Sweden. The Institute of Materials, Minerals and Mining, 1995.

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