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GEOPHYSICS AND GEODYNAMICS OF PROCESSES
ArticleName Geodynamic test site in the Streltsovsky ore field: Practice and prospects
DOI 10.17580/gzh.2018.07.02
ArticleAuthor Rasskazov I. Yu., Petrov V. A., Gladyr A. V., Tyurin D. V.
ArticleAuthorData

Institute of Mining, Far East Branch, Russian Academy of Sciences, Khabarovsk, Russia:
I. Yu. Rasskazov, Director, Doctor of Engineering Sciences, adm@igd.khv.ru
A. V. Gladyr, Researcher

Institute of Geology of Ore Deposits, Petrography, Mineralogy and Geochemistry – IGEM, Russian Academy of Sciences, Moscow, Russia:

V. A. Petrov, Head of Laboratory, Corresponding Member of the Russian Academy of Sciences


Priargunsky Mining and Chemical Works, Krasnokamensk, Russia:

D. V. Tyurin, Chief Surveyor

Abstract

The article considers the features of dynamic phenomena due to rock pressure and ways of their determination in underground mines of Priargunsky Mining and Chemical Works. For reliable forecasting and prevention of hazardous geodynamic phenomena within the Streltsovsky ore field (SOF), a geodynamic test site has been created. The test site is equipped with modern measuring systems of various spacing providing effective recording and comprehensive analysis of a wide range of geophysical wave field parameters changing in space and time (geoacoustic, microseismic, deformation, etc.). Using the geodynamic site options, important regularities in the behavior of rockburst-hazardous rock mass are identified, and the rock mass indicator is substantiated. Under conditions of induced seismicity in complicated geomechanical and hydrological situations of mining, it is necessary to continue development of methods and means for the SOF geodynamic test site, to add multi-level geomechanical monitoring system with new elements in the areas subject to hazardous geodynamic phenomena and to validate reliable precursors of such events.
The authors appreciate participation of P. A. Anikin, B. G. Saksin, D. I. Tsoi, D. S. Migunov (Institute of Mining, FEB RAS); G. I. Dolgikh (Pacific Oceanological Institute, FEB RAS); V. V. Poluektov, S. A. Ustinov, V. A. Minaev, A. B. Leksin (IGEM RAS); V. V. Pogorelov, Yu. L. Rebetsky (Institute of Physics of the Earth, RAS); V. A. Sankov, S. V. Ashurkov, A. V. Parfeevets, A. V. Lukhnev (Institute of the Earth’s Crust, SB RAS); A. N. Vlasov, D. B. Volkov-Berlgorodsky (Institute of Applied Mechanics RAS); S. V. Lukichev, A. A. Kozyrev, O. V. Nagovitsyn, I. E. Semenova (Mining Institute, Kola Science Center, RAS); A. N. Shabarov, K. V. Morozov (Saint-Petersburg Mining University) and fellows of the Irkutsk National Research Technical University, in this study.
The study was supported by the Russian Science Foundation, Grant No. 16-17-00018, and by the Presidium of the RAS in the framework of the Fundamental Research Program 1.48P: Deposits of strategic and high-tech metals in the Russian Federation – Location, formation, innovative technologies of prediction and management.

keywords Rock bursts, induced seismicity, geodynamics, tectonic structure, stress–strain state, rock mass, geomechanical monitoring, geodynamic test site, integrated observation network
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