Журналы →  Gornyi Zhurnal →  2019 →  №1 →  Назад

DEVELOPMENT OF DEPOSITS
Название Improving procedure of pre-project assessment of hard rock blastability in open pit mines
DOI 10.17580/gzh.2019.01.10
Автор Ignatenko I. M., Dunaev V. A., Tyupin V. N.
Информация об авторе

Belgorod State University, Belgorod, Russia:

I. M. Ignatenko, Director of the Institute of Earth Sciences, Candidate of Engineering Sciences
V. A. Dunaev, Professor, Doctor of Geologo-Mineralogical Sciences
V. N. Tyupin, Professor, Doctor of Engineering Sciences, tyupinvn@mail.ru

Реферат

Efficiency of hard mineral mining by the opencast method is in many ways governed by blasting quality, while the latter depends on natural jointing and hardness of rocks, as well as on drilling-and-basting design. In terms of Vostochny open pit mine, Polyus, procedure of full-scale examination of exposed rock mass in vertical and horizontal directions is improved. Using a representative sampling of actual data (808 319 measurements in rocks of 7 petrographic types) within the limits of Vostochny open pit mine, the following features of exposed rock mass are identified: considerable range of size of joints (0.11–2.13 m) and average size of joints in each petrographic type (0.36–0.91 m); clear trend of intensification of jointing with increasing depth (520 m vertically down). The mathematical model is developed for prediction of size in rock fragmentation by blasting with regard to the energy conservation law and effect of blasting environment in a rock block. The formula is proposed for determining average size of rock fragmentation by blasting depending on drill-and-blast process parameters and natural properties of rock mass. Based on the interactive map of rock blastability, the procedure is developed for on-line computation of drill-and-blast design parameters and pre-project assessment of blasting quality in any area of an open pit mine with the known jointing and hardness of rock mass. Application of this procedure will enable improved quality and shorter time of blasting in extraction blocks.

Ключевые слова Open pit mine, jointing and hardness of rocks, interactive map, blastability, drill-and-blast design parameters, average seize of rock fragmentation
Библиографический список

1. Sukhanov A. F., Kutuzov B. N. Breakage of Rocks. 2nd enlarged and revised edition. Moscow : Nedra, 1983. 344 p.
2. Kutuzov B. N., Tyupin V. N. Drilling and blasting design method to ensure preset fragmentation of rocks in open pit mining. Gornyi Zhurnal. 2017. No. 8. pp. 66–69. DOI: 10.17580/gzh.2017.08.12
3. Kutuzov B. N. Shot-Firer’s Manual. In two volumes. Series: Mining engineer’s library. Moscow : Gornoe delo LLC «Kimmeriyskiy tsentr», 2014. Vol. 10. Blasting. Book. 1. Iss. II. Technique, Technology and Safety of Blasting. 304 p.
4. Fokin V. A., Togunov M. B., Semkin S. V., Shitov Yu. A. Design procedure for drilling-and-blasting in open pit mines with low benches. Gornyi Zhurnal. 2015. No. 2. pp. 51–54. DOI: 10.17580/gzh.2015.02.09
5. Furtney J. K., Sellers E., Onederra I. Simple models for the complex process of rock blasting. Rock Fragmentation by Blasting : Proceedings of the 10th International Symposium. Boca Raton : CRC Press, 2013. pp. 275–282.
6. Zheng Bingxu, Li Zhanjun, Liu Yi. Theory and Practice of the Fragmentation Control of Rock Blasting. Proceedings of the 7th International Conference on Physical Problems of Rock Destruction. China, 2011. pp. 188–194.
7. Akande J. M., Lawal A. I. Optimization of Blasting Parameters Using Regression Models in Ratcon and NSCE Granite Quarries, Ibadan, Oyo State, Nigeria. Geomaterials. 2013. Vol. 3, No. 1. pp. 28–37.
8. Dugartsyrenov A. V., Kim S. I., Belchenko E. L., Nikolaev S. P. Blasting сomplex massive rock structures using combined and additional charges parameters for blasting works. Explosion technology. 2015. No. 113/70. pp. 142–148.
9. Snitka N. P., Misliboev I. T. Experimental proof of blasthole pattern in pre-blasting weakening zones in open pit mines. Gornyi Zhurnal. 2016. No. 2. pp. 13–15. DOI: 10.17580/gzh.2016.02.02
10. Ghiasi M., Askarnejad N., Dindarloo S., Shamsoddini H. Prediction of blast boulders in open pit mines via multiple regression and artificial neural networks. International Journal of Mining Science and Technology. 2016. Vol. 26, Iss. 2. pp. 183–186.
11. Yang L.-Y., Ding C.-X. Fracture mechanism due to blast-imposed loading under high static stress conditions. International Journal of Rock Mechanics and Mining Sciences. 2018. Vol. 107. pp. 150–158.
12. Xia X., Li H., Niu J., Li J., Liu Y. Experimental study on amplitude change of blast vibrations through steps and ditches. International Journal of Rock Mechanics and Mining Sciences. 2014. Vol. 71. pp. 77–82.
13. Ovsyannikov A. N., Ignatenko I. M., Dunayev V. A. Methods of zoning of quarry field in explosiveness of rocks (on example mine “Zhelezny” of OJSC “Kovdorsky GOK”. Scientific bulletins of the Belgorod State University. Series: Natural Sciences. 2015. No. 15(212). pp. 172–177.
14. Ignatenko I. M., Konovalov A. V., Ovsyannikov A. N. The Computer-Aided Technology for Calculating the Parameters of the Drilling and Blasting Operations at the Open-Cut Mines. Ferrous Metallurgy. 2015. No. 10(1390). pp. 35–37.
15. Poluhin O. N., Petin A. N., Ignatenko I. M., Dunaev V. A., Konovalov A. V. Assessment of the size of rocks in benchs and lumpiness of the blasted mountain mass on pits with use of GIS Geomix. International Journal of Pharmacy and Technology. 2016. Vol. 8, Iss. 4. pp. 26809–26818.
16. Typin V. N. Blasting and Geomechanical Processes in High-Stress Fractured Rock Mass. Belgorod, 2017. 191 p.

Language of full-text русский
Полный текст статьи Получить
Назад