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DEVELOPMENT OF DEPOSITS
Название Perimeter blasting in open pit mining and the concomitant issues
DOI 10.17580/gzh.2022.09.09
Автор Zharikov S. N., Kutuev V. A.
Информация об авторе

Institute of Mining, Ural Branch, Russian Academy of Sciences, Yekaterinburg, Russia:

S. N. Zharikov, Head of Laboratory, Candidate of Engineering Sciences, 333vista@mail.ru
V. A. Kutuev, Researcher

Реферат

The article presents some studies into the interaction of neighbor explosive charges during blasting. The issues related to the analysis of the formation of rupture faces in rock mass to prevent propagation of explosive waves are identified. The explosion shielding guides developed at the Institute of Mining, Ural Branch of the Russian Academy of Sciences are described. The potential adverse scenarios in case that the protective measures are neglected are discussed. An approach to adjusting the drilling and blasting parameters depending on the explosion pressure and on the rock properties is indicated. The novelty of the study lies in the simplified determination of the perimeter blasting parameters. It is possible to assess approximately the impact of explosive charges of different diameters on the well walls and on the rock pressure at a designated distance. A nomogram is given for the simplified determination of the impact exerted by explosive charges in rock mass; the nomogram allows finding the optimized ratios of the diameters of charges and wells, as well as estimating the variation in the destructive effect of a blast with an increasing distance. The research findings can also be used to evaluate the crushing effect of explosion since the pressure patterns in this case are the same as in perimeter blasting, and only the method of its volume adjustment changes.
The study was carried out under State Contract No. 075-00412-22 PR. Topic 1 (2022–2024): Methodological Framework for the Strategy of Integrated Solid Mineral Mining in the Development Trend of Mine Engineering Systems (FUWE-2022-0005).

Ключевые слова Perimeter blasting, explosion gas pressure, blasting operations, rock fracture, physical and mechanical properties of rocks, explosion shielding.
Библиографический список

1. Ufatova Z. G., Kerimova S. N., Lyuft E. D. The application of contour blasting in underground construction of mine workings and mining ore. Kultura. Nauka. Proizvodstvo. 2019. No. 4. pp. 36–39.
2. Overchenko M. N., Mozer S. P., Galushko F. I., Lunkov A. G. Advancement of the perimeter blasting charts for underground mining. Vzryvnoe delo. 2016. No. 115-72. pp. 202–213.
3. Sabirov R. Sh., Leonenko N. A. Techniques of optimization of drilling and blasting on the gold ore field Albazino. GIAB. 2017. No. 7. pp. 168–173.
4. Panzhin A. A., Kharisov T. F., Kharisova O. D. Substantiation of stable pitwall parameters based on the mining rock mass rating. Journal of Mining Science. 2019. Vol. 55, Iss. 4. pp. 522–530.
5. Antonenko L. K., Zoteev V. G. Application of special cutback technology at hard rock slopes in the USSR and abroad : Review. Series : Mining Industry. Moscow, 1986. Vol. 1. 27 p.
6. Zoteev V. G., Makarov A. B., Epshteyn I. V. Feasibility assessment of Pitwall Design Manual in planning mining of ore deposits by open pit method in modern Russia. Zoloto i tekhnologii. 2018. No. 1(39). pp. 52–57.
7. Zharikov S., Kutuev V. About order of comprehensive solving the seismic and pre-splitting issues for drill-and-blasting open-pits. Trigger Effects in Geosystems : The 5th International Conference, Sadovsky Institute of Geospheres Dynamics of Russian Academy of Sciences. Series: Springer Proceedings in Earth and Environmental Sciences. Cham : Springer, 2019. pp. 437–445.
8. Fokin V. A. Design and carrying out of drilling and blasting operations during stope placement in final position on final boundary of deep pits. Apatity : Izdatelstvo KNTs RAN, 2004. 231 p.
9. Onederra I. A., Catalan A., Quidim J. Evaluating pre-split performance through direct measurements of near field acceleration, particle velocity and gas pressure. Mining Technology. Transactions of the Institutions of Mining and Metallurgy: Section A. 2016. Vol. 125, Iss. 2. pp. 71–81.
10. Liyun Yang, Aiyun Yang, Siyu Chen, Shizheng Fang, Chen Huang et al. Model experimental study on the effects of in situ stresses on pre-splitting blasting damage and strain development. International Journal of Rock Mechanics and Mining Sciences. 2021. Vol. 138. 104587. DOI: 10.1016/j.ijrmms.2020.104587
11. Nguyen Dinh An, Pham Thai Hop, Le Cong Dien, Tran Quang Hieu, Tran Dinh Bao. Design of Pre Blasting (Pre-Splitting) in Tan Cang Quarry NO.1 in Vietnam. Inżynieria Mineralna. 2020. Vol. 1, No. 2. pp. 155–162.
12. Belin V. A., Kholodilov A. N., Gospodarikov A. P. Methodical principles of prediction of seismic effect due to large-scale blasting. Gornyi Zhurnal. 2017. No. 2. pp. 66–69. DOI: 10.17580/gzh.2017.02.12
13. Alenichev I. A., Rakhmanov R. A., Shubin I. L. Assessment of near-field blast effect toward optimized drilling-and-blasting in pit wall rock mass. GIAB. 2020. No. 4. pp. 85–95.
14. Adushkin V. V., Solovev S. P. Generation of Electric and Magnetic Fields by Air, Surface, and Underground Explosions. Combustion, Explosion, and Shock Waves. 2004. Vol. 40, No. 6. pp. 649–657.
15. Sadovskiy M. A. Geophysics and physics of explosion: Selectals. Moscow : Nauka , 2004. 440 p.
16. Mosinets V. N. Crushing and seismic action of blast in rocks. Moscow : Nedra, 1976. 271 p.
17. Kahriman A. Analysis of parameters of ground vibration produced from bench blasting at a limestone quarry. Soil Dynamics and Earthquake Engineering. 2004. Vol. 24, Iss. 11. pp. 887–892.
18. Ak H., Konuk A. The effect of discontinuity frequenc y on ground vibrations produced from bench blasting: A case study. Soil Dynamics and Earthquake Engineering. 2008. Vol. 28, Iss. 9. pp. 686–694.
19. Ak H., Iphar M., Yavuz M., Konuk A. Evaluation of ground vibration effect of blasting operat ions in a magnesite mine. Soil Dynamics and Earthquake Engineering. 2009. Vol. 29, Iss. 4. pp. 669–676.
20. Kumar R., Choudhury D., Bhargava K. Determination of blast-induced ground vibration equations for rocks using mechanical and geological properties. Journal of Rock Mechanics and Geotechnical Engineering. 2016. Vol. 8, Iss. 3. pp. 341–349.
21. Recommended practices for slope stability and seismic safety of buildings and structures during blasting in open pit mines. Leningrad, 1977. 17 p.
22. Support manual for galleries and their intersections in underground iron ore mines in the Ural and in Kazakhstan. Sverdlovsk : Institut gornogo dela MChM SSSR, 1986. 45 p.

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