Submit an Article
Become a reviewer
Vol 238
Pages:
392
Download volume:

Assessment of Rock-Burst Hazard in Deep Layer Mining at Nikolayevskoye Field

Authors:
D. V. Sidorov1
M. I. Potapchuk2
A. V. Sidlyar3
G. A. Kursakin4
About authors
  • 1 — Saint-Petersburg Mining University ▪ Orcid
  • 2 — Mining Institute Far Eastern Branch RAS
  • 3 — Mining Institute Far Eastern Branch RAS
  • 4 — Mining Institute Far Eastern Branch RAS
Date submitted:
2019-03-25
Date accepted:
2019-05-23
Date published:
2019-08-25

Abstract

The paper presents results of conducted research using regional and local methods of forecast and control over geomechanical state of the rock mass at burst-hazardous Nikolayevskoye field, located in a geodynamically active region. The study subject is the ore mass of  Nikolayevskoye field, characterized by man-induced and tectonic disturbances and high geodynamic activity. The aim of research was practical implementation of methods and instruments of forecast and control over geomechanical state of the burst-hazardous rock mass and safety improvement of mining operations.  Exploitation practice of burst-hazardous fields demonstrates that forecast accuracy of hazardous rock pressure demands cutting-edge multi-level systems, where local methods and tools complement regional ones. A regional forecast of rock-burst hazard at Nikolayevskoye field was performed by means of seismoacoustic method using automated control system for rock pressure (ACSRP) «Prognoz-АDS». Local forecast was carried out using «Prognoz-L» device, geophysical (sample disking) method and visual observations of dynamic pressure manifestations in the mining tunnels. Quality assessment of stress-strain and burst state of the rock mass was performed using specialized software «PRESS 3D URAL». Integration of engineering and geomechanical data in the process of conducting research guarantees a relevant assessment of rock-burst hazard in various areas of the field at various stages of its development. Practical verification of the system, where local methods and tools complement regional ones, demonstrated satisfactory results at Nikolayevskoye mining plant, which makes it recommendable for other mining facilities extracting ore at great depths under similar conditions of active geodynamic processes.

10.31897/pmi.2019.4.392
Go to volume 238

References

  1. Rasskazov I.Yu., Saksin B.G., Usikov V.I., Potapchuk M.I. Geodynamic State of the Rock Mass at Nikolayevskoye
  2. Polymetallic Field and Specifics of Rock-Burst Hazard Manifestations in the Process of Its Development. Gornyi zhurnal. 2016. N 12, p. 13-19 (in Russian).
  3. Eremenko V.A., Eremenko A.A., Filippov V.N. et al. Management of Geomechanical State of Geologic Environment
  4. in the Process of Sheregesh Field Development. Gornyi informatsionno-analiticheskii byulleten'. 2007. N 2, p. 155-169
  5. (in Russian).
  6. Eremenko A.A., Eremenko V.A., Matveev I.F. et al. Tectonic Block Development in the Zones of Large Tectonic Faults at Rock-Burst Hazardous Iron Ore Field. Gornyi zhurnal. 2007. N 11, p. 34-36 (in Russian).
  7. Rasskazov I.Yu., Kursakin G.A., Potapchuk M.I. Geomechanical Assessment of Deep-Layer Development Conditions
  8. at Yuzhnoye Polymetallic Field. Fiziko-tekhnicheskie problemy razrabotki poleznykh iskopaemykh. 2012. N 5, p. 125-134 (in Russian).
  9. Rasskazov I.Yu. Supervision and Management of Rock Pressure in the Far Eastern Mining Plants. Мoscow: Izd-vo «Gornaya kniga», 2008, p. 329 (in Russian).
  10. Saksin B.G., Rasskazov I.Yu., Shevchenko B.F. The Principles of Complex Study on Modern Stress-Strain State of Upper Crustal Layers of Amur Lithospheric Plate. Fiziko-tekhnicheskie problemy razrabotki poleznykh iskopaemykh. 2015. N 2, p. 53-65 (in Russian).
  11. Sidorov D.V., Potapchuk M.I., Sidlyar A.V. Forecast of Rock-Burst Hazard of the Tectonically Disrupted Ore Mass in the Deep Layers of Nikolayevskoye Polymetallic Field. Zapiski Gornogo instituta. 2018. Vol. 234, p. 604-611. DOI: 10.31897/PMI.2018.6.604 (in Russian).
  12. Rasskazov I.Yu., Saksin B.G., Petrov V.A., Shevchenko B.F. et al. Modern Stress-Strain State of Upper Crustal Layers
  13. of Amur Lithospheric Plate. Fizika Zemli. 2014. N 3, p. 144-153 (in Russian).
  14. Tereshkin A.A., Rasskazov M.I., Tsoi D.I. Assessment of the Rock Mass Burst Hazard by Means of Local Geoacoustic Method. Problemy i perspektivy kompleksnogo osvoeniya i sokhraneniya zemnykh nedr: Sb. dokladov 3-i Mezhdunarodnoi nauchnoi konferentsii. IPKON RAN. Мoscow, 2018, p. 132-136 (in Russian).
  15. Rasskazov Yu., Kursakin G.A., Osadchii S.P., Popov V.V. et al. Guidelines on Safety of Mining Operations at Rock-Burst Hazardous Fields Nikolayevskoye and Yuzhnoye (AO «GMK «Dalpolymetall»). IGD DVO RAN. Khabarovsk, 2018, p. 72
  16. (in Russian).
  17. Federal Standards and Rules on Industrial Safety «Regulations on the Safety of Mining Operations at Rock-Burst Hazardous Fields» N 576 from 02.12.2013. Мoscow, 2013, p. 41. URL: https://normative.kotur.ru/document (in Russian).
  18. Kosukhin N.I., Sidorov D.V., Beloglazov I.I., Timofeev V.Yu. Assessment of stress-strain and shock bump hazard of rock mass in the zones of high-amplitude tectonic dislocations. IOP Conf. Series: Earth and Environmental Science. 2019. Vol. 224, p. 1-5. DOI: 10.1088/1755-1315/224/1/012014
  19. Sidorov D.V., Ponomarenko T.V. The development of a software suite for predicting rock bursts within the framework of a system for ensuring geodinamic safety of mining operations. 17th International Multidiscip-linary Scientific GeoConference SGEM 2017, 29 June – 5 July, 2017. Vol. 17. Iss. 22, p. 633-638. DOI: 10.5593/sgem2017/22/S09.079
  20. Galchenko Yu.P., Eremenko V.A., Myaskov A.V., Kosyreva M.A. Solution of geoecological problems in underground mining of deep iron ore deposits. Eurasian Mining. 2018. N 1, p. 35-40.
  21. Zhang Z., Shimada H., Sasaoka T., Kai W. Study on the overlying strata movements and stability control of the retained goaf-side gateroad. Memoirs of the Faculty of Engineering, Kyushu University. 2016. Vol. 76. Iss. 2, p. 1-17.
  22. Tereshkin A.A., Rasskazov M.I. Assessment of burst-hazard rock massif by geoacoustic method. Eurock 2018. Geomechanics and Geodynamics of Rock Masses (set of 2 volumes) proceedings of the 2018 European rock mechanics symposium. Saint-Petersburg Mining University. St. Petersburg, 2018, p. 1627-1632.

Similar articles

Systemic Diagnostics of the Arctic Industry Development Strategy
2019 V. F. Bogachev, M. A. Gorenburgov, M. B. Alekseeva
Spatial Models Developed Using Laser Scanning at Gas Condensate Fields in the Northern Construction-Climatic Zone
2019 S. N. Menshikov, A. A. Dzhaljabov, G. G. Vasiliev, I. A. Leonovich, O. M. Ermilov
Manifestations of Acoustic Emission in Frozen Soils with Simultaneous Influence of Variable Mechanical and Thermal Effects on Them
2019 E. A. Novikov, V. I. Shkuratnik, M. G. Zaytsev
Impact of External Factors on National Energy Security
2019 V. L. Ulanov, E. Yu. Ulanova
Estimation Method for Vector Field Divergence of Earth Crust Deformations in the Process of Mineral Deposits Development
2019 B. T. Mazurov, M. G. Mustafin, A. A. Panzhin
Stimulation of the Drilling Process with the Top Driven Screw Downhole Motor
2019 S. L. Simonyants, M. Al Taee