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Vol 243
Pages:
293
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Justification of stripping and development of a modular mine site for a combined coal mining method in Kuzbass on the example Baikaimskaya mine site

Authors:
Roman I. Shishkov1
Valerii A. Fedorin2
About authors
  • 1 — Postgraduate Student Institute of Coal SB RAS
  • 2 — Ph.D., Dr.Sci. Researcher Institute of Coal SB RAS
Date submitted:
2020-05-05
Date accepted:
2020-05-24
Date published:
2020-06-30

Abstract

The article considers one actual method for development coal deposits in the Kuzbass by open-underground mining. The scientific and practical advantages of the proposed method due to the use of common infrastructure of coal mine and a modular mine site (subsequently transformed into a mining and technological structure operating according to the mine – longwall scheme) are presented. Currently, a development strategy for Kuzbass until 2035 has been developed. As part of the strategy, a draft program for subsoil use is being formed in the coal industry department. The program should take into account all the positive and negative aspects associated with coal mining in cities and municipal areas and also their prospects. In the Kuznetsk coal basin, 42 mines and 52 opencast mines are mining, of which 12 enterprises use partially unified infrastructure. According to the results of open-underground mining work conducted by the laboratory of the Institute of Coal and Coal Chemistry of the Siberian Branch of the Russian Academy of Sciences (Institute of Coal SB RAS), the list of sites includes favorable mining and geological conditions with incidence angles of up to 18 degrees. As open-pit coal production increases, many sites encounter such a parameter as maximum allowable (boundary) strip ratio. At the stage of preparing the feasibility study for the development of a coal deposit, this coefficient is calculated first of all, since duration of enterprise’s work and its economic component depend on it. In order to increase parameters, it is necessary to carry out transition from open works to underground. As a result, coal mine will not work at a loss, providing production with an economically disadvantageous strip ratio.

Keywords:
open-underground mining coal deposits strip ratio modular mine site related infrastructure
10.31897/pmi.2020.3.293
Go to volume 243

References

  1. Eremetov P.V. Justification of the scheme of stripping and development of the mine site “Shurapsky” with a combined (underground-open) method of coal mining. GIAB. 2009. S7, p. 85-92 (in Russian).
  2. Mikhailov A.Yu., Varfolomeev E.L., Kassina O.V. Technological aspects of the transition from open to underground coal mining in Kuzbass. Vestnik Kuzbasskogo gosudarstvennogo tekhnicheskogo universiteta. 2005. N 4.1, p. 41-44 (in Russian).
  3. Yalevskii V.D., Fedorin V.A., Anferov B.A., Varfolomeev E.L., Kassina O.V. Patent N 2285121 RF. Method for open-underground mining of a series of shallow coal formation. Publ. 10.10.2006. Bul. N 28 (in Russian).
  4. Shakhmatov V.Ya., Fedorin V.A., Anferov B.A., Kuznetsova L.V., Mikhailov A.Yu. Patent N 2387836 RF. A method for open-pit coal mining using the infrastructure of an related mine. Publ. 27.04.2010. Bul. N 12 (in Russian).
  5. Fedorin V.A., Shakhmatov V.Ya., Anferov B.A., Kuznetsova L.V. Patent N 2430236 RF. Method of combined coal deposit development. Publ. 27.09.2011. Bul. N 27 (in Russian).
  6. Anferov B.A., Kuznetsova L.V. Patent N 2490454 RF. Method of open-underground mining of a thick steeply inclined coal formation. Publ. 20.08.2013. Bul. N 23 (in Russian).
  7. Anferov B.A., Kuznetsova L.V., Fedorin V.A., Shakhmatov V.Ya. Patent N 2490455 RF. Method of open-underground mining of a shallow coal formation at the average thickness of the formation. Publ. 20.08.2013. Bul. N 23 (in Russian).
  8. Anferov B.A., Kuznetsova L.V., Fedorin V.A., Shakhmatov V.Ya. Patent N 2490456 RF. Method of open-underground mining of a thick shallow coal formation. Publ. 20.08.2013. Bul. N 23 (in Russian).
  9. Anferov B.A., Kuznetsova L.V. Patent N 2499129 RF. Method of open-underground mining of steep coal formation. Publ. 20.11.2013. Bul. N 32 (in Russian).
  10. Anferov B.A., Kuznetsova L.V. Patent N 2513785 RF. Method of complex coal deposit development. Publ. 20.04.2014. Bul. N 11 (in Russian).
  11. Anferov B.A., Kuznetsova L.V. Patent N 2651833 RF. Method of open-underground mining of a coal formation occurring in the form of brachisyncline. Publ. 24.04.2018. Bul. N 12 (in Russian).
  12. Anferov B.A., Kuznetsova L.V. Patent N 2563895 RF. Method of open-underground mining of a series of steeply inclined coal formation. Publ. 27.09.2015. Bul. N 27 (in Russian).
  13. Potapov V.P., Fedorin V.A., Kassina O.V. Modern geo-technological structure of Kuzbass coal mines.GIAB. 2006. Seminar N 15, p. 252-255 (in Russian).
  14. Fedorin V.A., Mikhailov A.Yu., Ivershina G.E. Geo-technological aspects of open-underground (combined) method of coal deposits development in Kuzbass. GIAB. 2008. Seminar N 15, p. 261-269 (in Russian).
  15. Fedorin V.A., Mikhailov A.Yu., Eremetov P.V. Combined geo-technology development of Kuzbass mineral resources.Ugol Kuzbassa. 2008. N 1, p. 70-73 (in Russian).
  16. Shishkov R.I., Fedorin V.A. Concept of coal deposits development by combined method. Sbornik materialov XI Vserossiiskoi nauchno-prakticheskoi konferentsii molodykh uchenykh “Rossiya Molodaya-2019”. Kemerovo: KuzGGU, 2019, p. 1-3 (in Russian).
  17. Shpanskii O.V., Ligotskii D.N., Borisov D.V. Design of open-pit mining boundaries. Sankt-Peterburgskii gosudarstvennyi gornyi institut. St. Petersburg, 2003, p. 90 (in Russian).
  18. Naghadehi M., Jimenez R., KhaloKakaie R., Jalali S. A new open-pit mine slope instability index defined using the improved rock engineering systems approach. International Jounal of Rock Mechanics and Mining Sciences. 2013. Vol. 61, p. 1-14.
  19. Islam M.R., Faruque M.O. Numerical modeling of slope stability consideration of an open-pit coalmine in the Phulbari coal basin. Electronic Journal of Geotechnical Engineering. 2012. Vol. 17, p. 3717-3729.
  20. Little M.J. Slope Monitoring Strategy at PPRust Open Pit Operations. International Symposium on Stability of Rock Slopes in Open Pit Mining and Civil Engineering. The South African Institute of Mining and Metallurgy. 2006, p. 211-230.
  21. Sainsbury D.P., Pierce M.E., Lorig L.J. Two- and three-dimensional numerical analysis of the interaction between open pit slope stability and remnant underground voids. 5th Large Open Pit Conference, Kalgoorlie, Western Australia. 2018, p. 251-257.

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