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HYBRID GEOTECHNOLOGY: SUSTAINABLE AND ENVIRONMENTALLY SOUND MINERAL MINING
Название Substantiation of underground geotechnology for hybrid mining of Kyshtym quartz deposits
DOI 10.17580/gzh.2016.05.07
Автор Sokolov I. V., Balek A. N., Antipin Yu. G., Smirnov A. A.
Информация об авторе

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

I. V. Sokolov, Head of Laboratory, Doctor of Engineering Sciences, geotech@igduran.ru
A. N. Balek, Leading Researcher, Doctor of Engineering Sciences
Yu. G. Antipin, Senior Researcher, Candidate of Engineering Sciences
A. A. Smirnov, Senior Researcher, Candidate of Engineering Sciences

Реферат

Kyshtym granular vein quartz mining uses hybrid successive open pit/underground techniques. Mining in the transition zone in close proximity to the open pit involves room-and-pillar method with ore conveyance by blasting force. Safety measures include formation of a stable barrier pillar, prevention of active aero- and hydraulic connection between the open pit and the underground mine and water removal from the open pit bottom by means of drainage holes. It is of current concern to evaluate a new technology for deeper level mining with a view to drastically reduce quartz loss. Evaluated through the design engineering and economic-and-mathematical modeling, the hybrid mining system involves room-and-pillar method for mining basic reserves (70%) and sublevel caving for extraction of pillars. Rooms 20–25 m wide and pillars are arranged along the strike of the ore body. It is recommended to carry out test blasting to determine such blasting parameters that ensure lower overground quartz yield at a commercial test site. The proposed underground geotechnology ensures mining safety due to control caving of hanging wall rocks and enables complete extraction of quartz (mineral loss reduction is 2.5 times).
The studies have been carried out under governmental support from the Ministry of Education and Science of the Russian Academy of Sciences (Unique Project Identifier RFMEF160714X0026).

Ключевые слова Quartz deposit, hybrid mining method, underground geotechnology, stress-strain state, mining system, mining sequence, loss and dilution, drilling-and-blasting
Библиографический список

1. Mineralurgiya zhilnogo kvartsa (Minerallurgy of gangue quarz). Under the editorship of V. G. Kuzmin and B. N. Kravts. Moscow : Nedra, 1990. 294 p.
2. Kaplunov D. R., Kalmykov V. N., Rylnikova M. V. Kombinirovannaya geotekhnologiya (Combined geotechnology). Moscow : «Ore and Metals» Publishing House, 2003. 558 p.
3. Volkov Yu. V., Sokolov I. V. Optimizatsiya podzemnoy geotekhnologii v strategii osvoeniya rudnykh mestorozhdeniy kombinirovannym sposobom (Optimization of underground geotechnology in the strategy of combined mastering of ore deposits). Gornyi Zhurnal = Mining Journal. 2011. No. 11. pp. 41–44.
4. Sokolov I. V., Antipin Yu. G. Sistematizatsiya i ekonomiko-matematicheskoe modelirovanie variantov vskrytiya podzemnykh zapasov pri kombinirovannoy razrabotke mestorozhdeniy (Systemetization and economics-mathematical modeling of methods of development mining of underground reserves during the combined deposit mining). Gornyi Zhurnal = Mining Journal. 2012. No. 1. pp. 67–71.

5. Baranovskiy K. V. Vliyanie gorno-geologicheskikh faktorov na effektivnost podzemnoy otrabotki naklonnykh zalezhey sredney moshchnosti (Influence of mining and geological factors on efficiency of underground stoping of inclined average deposits). Gornyy informatsionno-analiticheskiy byulleten = Mining Informational and Analytical Bulletin. 2011. No. S11. pp. 288–293.
6. Bogatskiy V. F., Pergament V. Kh. Seysmicheskaya bezopasnost pri vzryvnykh rabotakh. Bezopasnost burovzryvnykh rabot (Seismic safety during the blasting operations. Safety of drilling and blasting operations). Moscow : Nedra, 1978. 128 p.
7. Bezopasnost vzryvnykh rabot v promyshlennosti (Safety of blasting operations in industry). Under the editorship of B. N. Kutuzov. Moscow : Nedra, 1992. 544 p.
8. Baranovskiy K. V., Nikitin I. V. Innovatsionnaya tekhnologiya vskrytiya i otrabotki glubokikh gorizontov Kyshtymskogo mestorozhdeniya granulirovannogo kvartsa (Innovation technology of development mining and stoping of deep horizons of Kyshtym granulated quartz deposit). Problemy nedropolzovaniya = Subsoil use problems. 2014. No. 2. pp. 89–95.
9. Deb D., Das K. C. Extended Finite Element Method for the Analysis of Discontinuities in Rock Masses. Geotechnical and Geological Engineering. September 2010. Vol. 28, Iss. 5, pp. 643–659.
10. Balek A. E. Rock pressure control in chamber mining. Soviet Mining Science USSR. Vol. 24, Iss. 1. pp. 21–26. DOI: 0.1007/BF02498067. Published: JAN-FEB 1988.
11. Youjun Ning, Zheng Yang, Bin Wei, Bin Gu. Advances in two-dimensional discontinuous deformation analysis for rock-mass dynamics. Int. J. Geomech. March 2016. http://dx.doi.org/10.1061/(ASCE) GM.1943-5622.0000654.
12. Sokolov I. V., Smirnov A. A., Antipin Yu. G., Baranovskiy K. V., Rozhkov A. A. Resursosberegayushchaya tekhnologiya podzemnoy razrabotki mestorozhdeniya vysokotsennogo kvartsa (Resourcesaving technology of underground mining of high-valuble quartz deposit). Fiziko-tekhnicheskie problemy razrabotki poleznykh iskopaemykh = Journal of Mining Science. 2015. No. 6. pp. 133– 145.
13. Gorinov S. A. Effektivnost primeneniya ploskikh sistem zaryadov dlya otboyki silnotreshchinovatykh rud v podzemnykh usloviyakh (Efficiency of application of slab charge systems for stronglyfissured ore breaking in underground conditions). Izvestiya vuzov. Gornyy zhurnal = News of the Higher Institutions. Mining Journal. 1985. No. 7. pp. 68–73.
14. Furtney S. J. K., Sellers E., Onederra I. Simple models for the complex process of rock blasting. Rock Fragmentation by Blasting: Fragblast 10. Edited by Pradeep K. Singh, Amalendu Sinha. Leiden, Netherlands : CRC Press, 2013. pp. 275–282.
15. 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.

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