Extraction Planning Under Capacity Uncertainty at the Chuquicamata Underground Mine

Published Online:https://doi.org/10.1287/inte.2018.0961

References

  • Bae GI, Kim WC, Mulvey JM (2014) Dynamic asset allocation for varied financial markets under regime switching framework. Eur. J. Oper. Res. 234(2):450–458.CrossrefGoogle Scholar
  • Birge JR, Louveaux F (2011) Introduction to Stochastic Programming (Springer Science & Business Media, New York).CrossrefGoogle Scholar
  • Boland N, Dumitrescu I, Froyland G (2008) A multistage stochastic programming approach to open pit mine production scheduling with uncertain geology. Optim. Online (October 24), http://www.optimization-online.org/DB_FILE/2008/10/2123.pdf, 1–33.Google Scholar
  • Boucher A, Dimitrakopoulos R (2012) Multivariate block-support simulation of the Yandi iron ore deposit, Western Australia. Math. Geosci. 44(4):449–468.CrossrefGoogle Scholar
  • Brazil M, Thomas DA (2007) Network optimization for the design of underground mines. Networks 49(1):40–50.CrossrefGoogle Scholar
  • Carlyle WM, Eaves BC (2001) Underground planning at Stillwater Mining Company. Interfaces 31(4):50–60.LinkGoogle Scholar
  • Dowd P (1994) Risk assessment in reserve estimation and open-pit planning. Trans. Institution Mining Metallurgy, Section A: Mining Indust. 103(September–December):A148–A154.Google Scholar
  • Espinoza D, Goycoolea M, Moreno E, Newman A (2013) MineLib: A library of open pit mining problems. Ann. Oper. Res. 206(1):93–114.CrossrefGoogle Scholar
  • Lambert WB, Brickey A, Newman AM, Eurek K (2014) Open-pit block-sequencing formulations: A tutorial. Interfaces 44(2):127–142.LinkGoogle Scholar
  • Montiel L, Dimitrakopoulos R (2015) Optimizing mining complexes with multiple processing and transportation alternatives: An uncertainty-based approach. Eur. J. Oper. Res. 247(1):166–178.CrossrefGoogle Scholar
  • Newman AM, Yano CA, Rubio E (2013) Mining above and below ground: Timing the transition. IIE Trans. 45(8):865–882.CrossrefGoogle Scholar
  • Newman AM, Rubio E, Caro R, Weintraub A, Eurek K (2010) A review of operations research in mine planning. Interfaces 40(3):222–245.LinkGoogle Scholar
  • Olavarría S, Adriasola P, Karzulovic A (2006) Transition from open pit to underground mining at Chuquicamata, Antofagasta, Chile. Proc. SAIMM Internat. Sympos. Stability Rock Slopes Open Pit Mining Civil Engrg., Symposium Series S44 (SIAMM, Johannesburg, South Africa), 421–434.Google Scholar
  • O’Sullivan D, Newman A (2014) Extraction and backfill scheduling in a complex underground mine. Interfaces 44(2):204–221.LinkGoogle Scholar
  • O’Sullivan D, Newman A (2015) Optimization-based heuristics for underground mine scheduling. Eur. J. Oper. Res. 241(1):248–259.CrossrefGoogle Scholar
  • Qinglin C, Stillborg B, Li C (1996) Optimization of underground mining methods using Grey theory and neural networks. Ayres de Silva LA, Chaves AP, Hennies WT, eds. Mine Planning and Equipment Selection (CRC Press, Boca Raton, FL), 393–398.Google Scholar
  • Ramazan S, Dimitrakopoulos R (2007) Stochastic optimisation of long-term production scheduling for open pit mines with a new integer programming formulation. Dimitrakopoulos R, ed. Orebody Modelling and Strategic Mine Planning: Uncertainty and Risk Management Models, Spectrum series, vol. 14 (The Australasian Institute of Mining and Metallurgy, Carlton, Australia), 385–392.Google Scholar
  • Reus L, Mulvey JM (2015) Multistage stochastic optimization for private equity investments. J. Asset Management 16(5):342–362.CrossrefGoogle Scholar
  • Rockafellar RT, Uryasev S (2002) Conditional value-at-risk for general loss distributions. J. Banking Finance 26(7):1443–1471.CrossrefGoogle Scholar
  • Sarin SC, West-Hansen J (2005) The long-term mine production scheduling problem. IIE Trans. 37(2):109–121.CrossrefGoogle Scholar
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