Formalization of selection procedure of mineral mining technologies

The current systems of mineral mining are reviewed. The major problems which can arise in the course of mineral mining are formulated. The procedure is proposed to select a mineral mining technology and backfill mixture composition at the preset backfill parameters. The necessity of the transition procedure to digital models is considered as a case-study of backfill mixture selection. This procedure should include fuzzy algorithms and models capable to process and interpret mass data and to identify the external influences (geological, managerial, economic and production factors). Digital models specify the internal environment domains to be of priority in decision-making and make it possible to interconnect these domains with regard to the mine design and mining technology. A digital model enables estimation of integral project parameters at the early stages of backfill composition selection. The structural performance of the digital model of a project solution (selection of backfill mixture) is formulated. The digital model uses the systemic analysis and formalization of geological, geotechnical and external conditions of a mineral deposit, which enables the comparative assessment of integral indices of different solutions. The information structure of a project variant is recommended. It is proposed to use weight factors for the efficiency rating. In the improved decision-making (in terms of selection of backfill composition), digitalization is not a revolutionary method contradictious to previous R&D results but a neutral accelerator of stage-wise development.

Keywords: algorithm, geotechnology, mineral mining, backfill, integral indices, model, procedure, strength, strength characteristics, digital model, digitalization.
For citation:

Kaung P. A., Zotov V. V., Gadzhiev M. A., Artemov S. I., Gireev I. A. Formalization of selection procedure of mineral mining technologies. MIAB. Mining Inf. Anal. Bull. 2022;(2):124-138. [In Russ]. DOI: 10.25018/0236_1493_2022_2_0_124.

Acknowledgements:
Issue number: 2
Year: 2022
Page number: 124-138
ISBN: 0236-1493
UDK: 622:681.51:004.94
DOI: 10.25018/0236_1493_2022_2_0_124
Article receipt date: 24.11.2021
Date of review receipt: 10.12.2021
Date of the editorial board′s decision on the article′s publishing: 10.01.2022
About authors:

Kaung Pyae Aung1, Cand. Sci. (Eng.), Doctoral Candidate, e-mail: kaungpyae05@gmail.com, ORCID ID: 0000-0003-0123-7176,
V.V. Zotov1, Cand. Sci. (Eng.), Assistant Professor, e-mail: zotov.vv@misis.ru,
M.A. Gadzhiev1, Graduate Student, e-mail: gadjiev.ma@edu.misis.ru
S.I. Artemov1, Graduate Student, e-mail: artemov.si@edu.misis.ru
I.A. Gireev1, Graduate Student, e-mail: gireev.ia@edu.misis.ru
1 National University of Science and Technology «MISiS», 119049, Moscow, Russia.

 

For contacts:

Kaung Pyae Aung , e-mail: kaungpyae05@gmail.com.

Bibliography:

1. Temkin I., Myaskov A., Deryabin S., Konov I., Ivannikov A. Design of a digital 3D model of transport–technological environment of open-pit mines based on the common use of telemetric and geospatial information. Sensors. 2021, vol. 21, no. 18, article 6277. DOI: 10.3390/s21186277.

2. Khairutdinov M. M., Kongar-Suryun Ch. B., Khairutdinov A., Tyulyaeva Yu. S. Improving safety in the extraction of water-soluble ores by optimizing the parameters of the laying array. Occupational Safety in Industry. 2021, no. 1, pp. 53—59. [In Russ]. DOI: 10.24000/0409-29612021-01-53-59.

3. Myaskov A., Temkin I., Deryabin S., Marinova D. Factors and objectives of sustainable development at the implementation of digital technologies and automated systems in the mining industry. E3S Web of Conferences. 2020, vol. 174, article 04023. DOI: 10.1051/e3sconf/202017404023.

4. Sychev A. E., Zaytseva E. V., Tolkachyov P. S. Economic digitalization: contradictions and prospects. Studies in Systems, Decision and Control. 2021, vol. 314, pp. 353–359. DOI: 10.1007/978-3-030-56433-937.

5. Golik V. I., Dmytrak Yu. V., Gabaraev O. Z., Kozhiev Kh. Kh. Minimizing the impact of mining on the environment. Ecology and Industry of Russia. 2018, vol. 22, no. 6, pp. 26—29. [In Russ]. DOI: 10.18412/1816-0395-2018-6-26-29.

6. Kashnikov Yu. A., Ermashov А. O., Efimov А. A. Geological and geomechanical model of Verkhnekamsk potash deposit site. Journal of Mining Institute. 2019, vol. 237, pp. 259–267. [In Russ]. DOI: 10.31897/PMI.2019.3.259.

7. Golik V. I., Dmytrak Yu. V., Komashchenko V. I., Razorenov Yu. I. Environmental aspects of storing tails of ore dressing in a mountain region. Ecology and Industry of Russia. 2018, vol. 22, no. 6, pp. 35—39. [In Russ]. DOI: 10.18412/1816-0395-2018-6-35-39.

8. Grayson R. L. Addressing the dual challenges of meeting demand for minerals and sustainable development. Minerals. 2011, vol. 1, no. 1, pp. 1—2. DOI: 10.3390/min1010001.

9. Lovchikov A. V. Mine-tectonic rock bursts at the lovozersky rare-metal deposit. Vestnik Murmanskogo gosudarstvennogo tekhnicheskogo universiteta. Nauki o Zemle i smezhnye ekologicheskie nauki. 2008, vol. 11, no. 3, pp. 385—392. [In Russ].

10. Malovichko A. A., Blinova T. S., Lebedev A. Yu., Nekrasova L. V. Solikamsk earthquake on January 5, 1995. Problemy bezopasnosti pri otrabotke mestorozhdeniy poleznykh iskopaemykh v zonakh gradopromyshlennykh aglomeraciy: Materialy mezhdunarodnogo simpoziuma SPM-95 [Safety problems during mining of mineral deposits in the zones of urban agglomerations: Materials of the international symposium SPM-95], Ekaterinburg, UrO RAN, 1997, pp. 307–315. [In Russ].

11. Adigamov A. E., Yudenkov A. V. Stress–strain behavior model of disturbed rock mass with regard to anisotropy and discontinuities. MIAB. Mining Inf. Anal. Bull. 2021, no. 8, pp. 93– 103. [In Russ]. DOI: 10.25018/0236_1493_2021_8_0_93.

12. Herbut A., Khairutdinov M. M., Kongar-Syuryun Ch., Rybak J. The surface wave attenuation as the effect of vibratory compaction of building embankments. IOP Conference Series: Earth and Environmental Science. 2019, vol. 362, no. 1, article 012131. DOI: 10.1088/17551315/362/1/012131.

13. Dobrzycki P., Kongar-Syuryun Ch., Khairutdinov А. Vibration reduction techniques for Rapid Impulse Compaction (RIC). Journal of Physics: Conference Series. 2020, vol. 1425, no. 1), 012202. DOI: 10.1088/1742-6596/1425/1/012202.

14. Khayrutdinov M. M., Kongar-Syuryun Ch. B., Tyulyaeva Yu. S., Khayrutdinov A. M. Planetary technology. Prerequisites for the formation of a new scientific discipline. Russian Mining Industry. 2020, no. 3, pp. 113–120. [In Russ]. DOI: 10.30686/1609-9192-2020-3-113-120.

15. Gugunskiy D., Chernykh I., Khairutdinov A. Legal models for activities on the exploration and utilization of space resources: Towards the «Space-2030» agenda. Advances in Intelligent Systems and Computing. 2020, vol. 1100 AISC, pp. 657—664. DOI: 10.1007/978-3-030-39319-973.

16. Khayrutdinov A. Current issues of mining activities on celestial bodies: International law aspects. The Advances in the Astronautical Sciences. 2020, vol. 170, pp. 895–902.

17. Khairutdinov A., Tyulyaeva Y., Kongar-Syuryun Ch., Rybak A. Extraction of minerals on celestial bodies as a new scientific direction. IOP Conference Series: Earth and Environmental Science. 2021, vol. 684, no. 1, article 012004. DOI: 10.1088/1755-1315/684/1/012004.

18. Khayrutdinov A. M., Kongar-Syuryun Ch. B., Kowalik T., Tyulyaeva Yu. S. Stress–strain behavior control in rock mass using different-strength backfill. MIAB. Mining Inf. Anal. Bull. 2020, no. 10, pp. 42–55. [In Russ]. DOI: 10.25018/0236-1493-2020-10-0-42-55.

19. Kowalik T., Ubysz A. Waste basalt fibers as an alternative component of fiberconcrete. Materials Today: Proceedings. 2021, vol. 38, pp. 2055—2058. DOI: 10.1016/j.matpr.2020.10.140.

20. Lyashenko V. I., Khomenko O. E., Golik V. I. Friendly and resource-saving methods of underground ore mining in disturbed rock masses. Mining Science and Technology (Russian Federation). 2020, vol. 5, no. 2, pp. 104—118. DOI: 10.17073/2500-0632-2020-2-104-118.

21. Papán D., Valašková V., Drusa M. Numerical and experimental case study of blasting works effect. IOP Conference Series: Earth and Environmental Science. 2016, vol. 44, no. 5, article 052052. DOI: 10.1088/1755-1315/44/5/052052.

22. Melnik V. V., Vasyuchkov Yu. F. Principles for improving safety in the development of coal deposits. Occupational Safety in Industry. 2016, no. 8, pp. 51—54.

23. Ivannikov A., Chumakov A., Prischepov V., Melekhina K. Express determination of the grain size of nickel-containing minerals in ore material. Materials Today: Proceedings. 2021, vol. 38, pp. 2059—2062. DOI: 10.1016/j.matpr.2020.10.141.

24. Kononov A. V., Goncharenko S. N., Assanov D. A., Maslennikov O. O. Research studying of ultrasonic effects on ion-exchange processes in uranium production by the insitu leaching method. Tsvetnye Metally. 2020, no. 4, pp. 50–57. [In Russ]. DOI: 10.17580/ tsm.2020.04.06.

25. Vinnikov V. A., Silberschmidt M. G., Bocharov V. A., Ignatkina V. A., Gzogyan T. N. Environmental resource — Economized processes of recycling mineral raw materials of complex composition. Environment, Technology, Resources. 2015, vol. 1, pp. 209–215. DOI: 10.17770/ etr2013vol1.837.

26. Kuziev D. A., Pyatova I. Yu., Klement'eva I. N., Pikhtorinskiy D. Algorithm for the determination of maximum feed drive power of drilling rigs in open pit mining. MIAB. Mining Inf. Anal. Bull. 2019, no. 1, pp. 128–133. [In Russ]. DOI: 10.25018/0236-1493-2019-010-128-133.

27. Khairutdinov A., Ubysz A., Adigamov A. The concept of geotechnology with a backfill is the path of integrated development of the subsoil. IOP Conference Series: Earth and Environmental Science. 2021, vol. 684, no. 1, article 012007. DOI: 10.1088/1755-1315/684/1/012007.

28. Kupriyanov V. V., Bondarenko I. S. Ensuring safety of industrial cargo by rail transportation at the mining enterprises. Occupational Safety in Industry. 2021, no. 4, pp. 56—62. [In Russ]. DOI: 10.24000/0409-2961-2021-4-56-62.

29. Evsukov S. G., Sigarev A. V., Ustyuzhanina E. V., Zaytseva E. V. Comparative analysis of pricing policies in the market for network goods. Journal of Internet Banking and Commercethis. 2016, vol. 21, no. S6.

30. Kim M. L., Pevzner L. D., Temkin I. O. Development of automatic system for unmanned aerial vehicle (UАV) motion control for mine conditions. Mining Science and Technology (Russian Federation). 2021, vol. 6, no. 3, pp. 203—210. DOI: 10.17073/2500-06322021-3-203-210.

31. Kupriyanov V. V., Bondarenko I. S. Fuzzy logic in reliability assessment of short-term forecast models for mining equipment. Gornyi Zhurnal. 2021, no. 5, pp. 75–79. [In Russ]. DOI: 10.17580/gzh.2021.05.08.

32. Klimov I. Yu. Analysis of soft skills-based approach effectiveness in advanced training program for mining company. Mining Science and Technology (Russian Federation). 2020, vol. 5, no. 1, pp. 56—68. DOI: 10.17073/2500-0632-2020-1-56-68.

33. Temkin I., Klebanov D., Deryabin S., Konov I. Predictive analytics in mining. dispatch system is the core element of creating intelligent digital mine. Communications in Computer and Information Science. 2020, 1201 CCIS, pp. 365–374. DOI: 10.1007/978-3-030-46895-828.

34. Tomilin A. V. Creation of a feasibility study for the design of underground structures using expert systems. Estestvennye i tekhnicheskie nauki. 2016, no. 4(94), pp. 228—232. [In Russ].

35. Kudyakov V. A., Minaev N. N., Kopanitsa N. O., Zharova E. A. Feasibility study of infrastructure projects on construction material production. Vestnik tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. 2015, no. 1, pp. 235—239. [In Russ].

36. Vostrikov A. V., Prokofeva E. N., Goncharenko S. N., Gribanov I. V. Analytical modeling for the modern mining industry. Eurasian Mining. 2019, no. 2019, no. 2, pp. 30–35. DOI: 10.17580/em.2019.02.07.

37. Malkin A. S. Razrabotka metodov poetapnogo proektirovaniya optimizatsii parametrov i integral'noy otsenki proektov ugol'nykh shakht [Development of methods for step-by-step design optimization of parameters and integral assessment of coal mine projects], Doctor’s thesis, Moscow, MGI, 1972, 321 p.

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