Submit an Article
Become a reviewer
Vol 221
Pages:
644-650
Download volume:
RUS ENG
Article

Foundations for technical solutions in organizing excavation of open ore pits

Authors:
S. I. Fomin
About authors
  • Ph.D., Dr.Sci. professor Saint-Petersburg Mining University
Date submitted:
2015-11-05
Date accepted:
2016-01-02
Date published:
2016-10-24

Abstract

To study stochastic mining technical systems of opencast mines, where parallel to clearly defined values random and indefinite factors operate, probabilistic and statistical techniques are mostly used nowadays. Formally, the task of producing a design solution may, under the conditions of indeterminacy be transformed into an equivalent deterministic problem formulated for a risky situation. Uncertainty in the initial mining, geological and technical-economic information available during the design stage may result in changing the principal output characteristics of the opencast mine and undermine its operational efficiency during its exploitation. Lowering the possible economic losses is then possible via designing a stable technological system. To minimize the degree of indeterminacy one first of all needs to identify the area of potential risk, define the probability of its emergence and assess its potential consequences. In case such consequences may be precluded, a clearer more complete understanding of the problem would promote a better thought through reaction to potential risk in the course of implementing design solutions.

Область исследования:
Mining
Keywords:
planning opencast mine organization risk uncertainty opencast mine parameters deposit probability
10.18454/pmi.2016.5.644
Go to volume 221

References

  1. Arsentiev A.I. Opencast Mine Operating Rate. Sankt-Peterburg. gornyi in-t im. G.V.Plekhanova. St. Petersburg, 2002, p.85 [in Russian].
  2. Ganickij V.I. Management of Mining Production. Terminologicheskij slovar'. Moscow: Gornaja kniga, 2013, p.472 [in Russian].
  3. Larin N.S. Managing technical and economic indicators of opencast mines of non-ore construction materials based on analog technique of assessing expenses. Gornyj informacionno-analiticheskij bjulleten'. 2015. N 5, p.108-113 [in Russian].
  4. Lipsic I.V. Economics. Moscow: OMEGA-L, 2006, p.656 [in Russian].
  5. Salmanov O.N. On the optimal terms of developing mineral deposits under the conditions of market model economics. Gornyi zhurnal. 1993. N 6, p.9-11 [in Russian].
  6. Trubetskoi K.N., Krasnyanskii G.L., Khronin V.V. Designing Opencast Mines. In 2 vol. Moscow: Izd-vo Akademii gornykh nauk, 2001. Vol.1, p.519 [in Russian].
  7. Fomin S.I. Demand analysis on the market of mineral resources when assessing opencast output. Gornyj zhurnal. 2002. N 4, p.48-53 [in Russian].
  8. Fomin S.I., Bazhenov M.V. Assessing the effect of market factors on opencast mines output. Gornyj zhurnal. 1996. N 11-12, p.28-30 [in Russian].
  9. Fomin S.I., Semenov A.S. Assessing the risk of decision making in designing opencast mines. Zapiski Gornogo instituta. 2007. Vol.173, p.56-60 [in Russian].
  10. Fomin S.I., Kava P.B. Assessing the efficiency of investments into opencast mining of deposits of complex structure. Gorniy informazionno-analitichesriy bulleten. 2011. N 5, p.312-316 [in Russian].
  11. Fomin S.I., Pasinkov D.V., Semenov A.S. Assessing the efficiency of adopting project solutions. Zapiski gornogo instituta. 2009. Vol.180, p.12-15 [in Russian].
  12. Fomin S.I. Opencast Mine Output and Demand for Mineral Resources. St. Petersburg: Теmа, 1999, p.169 [in Russian].
  13. Camus J.P. Management of mineral resources. Mining Engineering (SME). 2002. January, p.17-25.
  14. DeMarzo Peter M. Corporate Incentives for Hedging and Hedge Accounting / Peter M. DeMarzo; Darrell Duffie // The Review of Financial Studies. 1995. Vol.8. N 3. P.743-771.
  15. Fomin S.I. Risk analysis method for opencast mining project // Annual. University of mining and geology St. Ivan Rilski. Sofia. 2012. Part 2. Vol.55. P.23-28.
  16. Frizell E.M. USBM designs inpit movable crusher based on mine personnel survey / E.M.Frizell, R.W.Utley // Mining Engineering. 1983. Vol.35. N 4. P.317-321.
  17. Hill J.H. Geological and economical estimate of mining projects. London: Informa Group, 1993. 85 p.
  18. Hustrulid W. Open Pit Mine: Planning & Design / W.Hustrulid, M.Kuchta. Rotterdam; Brookfield, VT: A.A.Balkema, 1998. 735 p.
  19. Open Pit Mining Planning by William A. Hustrulid, Mark E. Kuchta. CRC Press, Har/Com edition. 2006. 971 p.
  20. Schröder D.L. Large surface miners – applications and cost calculations // Krupp Fördertechnik GmbH, Essen, Germany, February, 1999. P.1-6.
  21. Tufano Peter. Who Manages Risk? // An Empirical Examination of Risk Management Practices in the Gold Mining Industry: The Journal of Finance. 1996. Vol.51. N 4. P.1097-1137.

Similar articles

Investigation of polymer material of the working camera-channel of the magnetic pumps for heavy oil
2016 M. A. Vasileva, S. Feit
Russia and Germany: new opportunities for cooperation in the primary sector
2016 I. B. Sergeev, O. Yu. Lebedeva
On capabilities of thermomechanical treatment in increasing durability of short service life elements of mining аnd processing equipment
2016 V. I. Bolobov, V. S. Bochkov
«Proceedings Of The Mining Institute»: history and modernization (to 110-th anniversary of first publication)
2016 I. G. Rebeshchenkova
Development of import subtituting technologies for increasing productivity of sintering machines and strength of agglomerates
2016 V. L. Trushko, V. A. Utkov
А analysis and classification of resource saving technologies for reproduction of mineral resources оf titanium industry
2016 S. V. Fedoseev, Dzhada Sanneris, M. V. Tochilo