157
Centerra Gold Inc. & Premier Gold Mines Limited 2016. Centerra gold and premier gold announce
feasibility study results on the hardrock project. In: Pearson, J.W. & Gollat, M. (eds.). CenterraGold
and Premier Gold Mines Limited.
Costmine 2016. Mine and mill equipment costs: An estimator’s guide. Washington, USA: CostMine
Division of InfoMine USA, Inc. in cooperationg with Aventure Engineering, Inc.
Dagdelen, K. & Traore, I. Open pit transition depth determination through global analysis of open pit
and underground mine scheduling. In: Dimitrakopoulos, R., ed. Proceedings of Orebody Modelling
and Strategic Mine Planning, 2014 Perth, Australia. Australasian Institute of Mining and Metallurgy,
195–200.
De Carli, C. & De Lemos, P.R. 2015. Project optimization. REM: R. Esc. Minas, 68, 97–102.
Ilog, I. 2015. Cplex reference manual and software. 12.6.3.0 ed. Pullman, WA, USA: ILOG S.A. and
ILOG Inc.
King, B., Goycoolea, M. & Newman, A. 2016. Optimizing the open pit-to-underground mining
transition. European Journal of Operational Research, 257, 297–309.
Kurppa, R. & Erkkilä, E. Changing from open pit to underground mining at pyhasalmi. Rock Mechanics
Symposium, 1967 Helsinki. 239–247.
Lerchs, H. & Grossman, I.F. 1965. Optimum design of open-pit mines. The Canadian Mining and
Metallurgical Bulletin, 58, 47–54.
Luxford, J. 1997. Surface to underground-making the transition, in proceedings of the international
conference on mine project development. In: Barnes, E. (ed.) The Australasian Institute of Mining
and Metallurgy. Sydney: AusIMM.
Macneil, J. a. L. & Dimitrakopoulos, R. 2017. A stochastic optimization formulation for the transition
from open pit to underground mining. Springer, 21.
Mathworks, I. 2018. Matlab software. In: Mathworks (ed.) 9.4.0.813654 (R2018a) ed.: Mathworks Inc.
Opoku, S. & Musingwini, C. 2013. Stochastic modelling of the open pit to underground transition
interface for gold mines. International Journal of Mining, Reclamation and Environment, 27, 407–424.
Ordin, A.A. & Vasil’ev, I.V. 2014. Optimized depth of transition from open pit to underground coal
mining. J Min Sci, 50, 696–706.
Roberts, B., Elkington, T., Van Olden, K. & Maulen, M. 2013. Optimising combined open pit and
underground strategic plan. Mining Technology. Maney on behalf of the Institute and The AusIMM.
Whittle, D., Brazil, M., Grossman, P.A., Rubinstein, J.H. & Thomas, D.A. 2018. Combined optimisation
of an open-pit mine outline and the transition depth to underground mining. European Journal of
Operational Research, 000, 1–11.
Centerra Gold Inc. & Premier Gold Mines Limited 2016. Centerra gold and premier gold announce
feasibility study results on the hardrock project. In: Pearson, J.W. & Gollat, M. (eds.). CenterraGold
and Premier Gold Mines Limited.
Costmine 2016. Mine and mill equipment costs: An estimator’s guide. Washington, USA: CostMine
Division of InfoMine USA, Inc. in cooperationg with Aventure Engineering, Inc.
Dagdelen, K. & Traore, I. Open pit transition depth determination through global analysis of open pit
and underground mine scheduling. In: Dimitrakopoulos, R., ed. Proceedings of Orebody Modelling
and Strategic Mine Planning, 2014 Perth, Australia. Australasian Institute of Mining and Metallurgy,
195–200.
De Carli, C. & De Lemos, P.R. 2015. Project optimization. REM: R. Esc. Minas, 68, 97–102.
Ilog, I. 2015. Cplex reference manual and software. 12.6.3.0 ed. Pullman, WA, USA: ILOG S.A. and
ILOG Inc.
King, B., Goycoolea, M. & Newman, A. 2016. Optimizing the open pit-to-underground mining
transition. European Journal of Operational Research, 257, 297–309.
Kurppa, R. & Erkkilä, E. Changing from open pit to underground mining at pyhasalmi. Rock Mechanics
Symposium, 1967 Helsinki. 239–247.
Lerchs, H. & Grossman, I.F. 1965. Optimum design of open-pit mines. The Canadian Mining and
Metallurgical Bulletin, 58, 47–54.
Luxford, J. 1997. Surface to underground-making the transition, in proceedings of the international
conference on mine project development. In: Barnes, E. (ed.) The Australasian Institute of Mining
and Metallurgy. Sydney: AusIMM.
Macneil, J. a. L. & Dimitrakopoulos, R. 2017. A stochastic optimization formulation for the transition
from open pit to underground mining. Springer, 21.
Mathworks, I. 2018. Matlab software. In: Mathworks (ed.) 9.4.0.813654 (R2018a) ed.: Mathworks Inc.
Opoku, S. & Musingwini, C. 2013. Stochastic modelling of the open pit to underground transition
interface for gold mines. International Journal of Mining, Reclamation and Environment, 27, 407–424.
Ordin, A.A. & Vasil’ev, I.V. 2014. Optimized depth of transition from open pit to underground coal
mining. J Min Sci, 50, 696–706.
Roberts, B., Elkington, T., Van Olden, K. & Maulen, M. 2013. Optimising combined open pit and
underground strategic plan. Mining Technology. Maney on behalf of the Institute and The AusIMM.
Whittle, D., Brazil, M., Grossman, P.A., Rubinstein, J.H. & Thomas, D.A. 2018. Combined optimisation
of an open-pit mine outline and the transition depth to underground mining. European Journal of
Operational Research, 000, 1–11.
