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PHYSICS OF ROCKS AND PROCESSES
Название Evolution of secondary stress field during underground mining of thick ore bodies
DOI 10.17580/em.2021.01.04
Автор Galchenko Yu. P., Eremenko V. A.
Информация об авторе

College of Mining, NUST MISIS, Moscow, Russia:

Galchenko Yu. P., Research Manager, Expert of Research Center for Applied Geomechanics and Convergent Technologies in Mining, Doctor of Engineering Sciences, Professor
Eremenko V. A., Director of Research Center for Applied Geomechanics and Convergent Technologies in Mining, Professor, Doctor of Engineering Sciences, prof.eremenko@gmail.com

Реферат

Rapidly evolving economic crisis generated by the unbalanced confrontation between the technosphere and biosphere dictates finding and implementation of a drastically new technology paradigm of development in the mineral mining sector based on the novel models and ideas about transition to nature-like geotechnologies. Regarding anthropogenic change in subsoil in the course of mineral mining, it is necessary to study the evolution of the secondary stress field in space and time as the structure of this field exerts a dominant influence on parameters of promising mining technologies.

The study was supported by the Russian Science Foundation, Project No. 19-17-00034.

Ключевые слова Geosphere crisis, technology paradigm ecologization, anthropogenic change of subsoil, underground mining, secondary stress field, structure, geotechnical system model, calibration, experiment
Библиографический список

1. Nikolaikin N. I., Nikolaikina N. E., Melekhova O. P. Ecology. Moscow : Drofa, 2008. 622 p.
2. Vernadsky V. I. Biosphere and noosphere. Moscow : Airispress, 2007. 576 p.
3. Gorsky Yu. M., Stepanov A. M., Teslinov A. G. Homeostatics : Harmony in the game of contradictions. Irkutsk : Reprotsentral, 2008. 634 p.
4. Trubetskoy K. N. (Ed.). Mining sciences. Subsoil use and preservation. Moscow : Akademiya gornykh nauk, 1997. 476 p.
5. Trubetskoy K. N. New trends in integrated subsoil use. Moscow : IPKON AN SSSR, 1990. 12 p.
6. Trubetskoy K. N., Galchenko Yu. P. Nature-like technology of integrated subsoil use : Problems and prospects. Moscow : Nauchtekhlitizdat, 2020. 368 p.
7. Sidorov D., Ponomarenko T. Reduction of the Ore Losses Emerging within the Deep Mining of Bauxite Deposits at the Mines of OJSC Sevuralboksitruda. IOP Conference Series: Earth and Environmental Science. 2019. Vol. 302. 012051. DOI: 10.1088/1755-1315/302/1/012051
8. Rybin V. V., Konstantinov K. N., Kagan M. M., Panasenko I. G. Methodology of integrated stability monitoring in mines. Gornyi Zhurnal. 2020. No. 1. pp. 53–57. DOI: 10.17580/gzh.2020.01.10
9. Protosenya A. G., Verbilo P. E., Strength estimation of block rock mass by numerical modeling. Izvesriya vuzov. Gornyi zhurnal. 2016. No. 4. pp. 47–54.
10. Cheng G., Chen C., Li L., Zhu W. et al. Numerical modelling of strata movement at footwall induced by underground mining. International Journal of Rock Mechanics and Mining Sciences. 2018. Vol. 108. pp. 142–156.
11. Yu L., Ignatov Y., Ivannikov A., Khotchenkov E., Krasno shtanov D. Common features in the manifestation of natural and induced geodynamic events in the eastern regions of Russia and China. IOP Conference Series: Earth and Environmental Science. 2019. Vol. 324(1). 012004.
12. Kong L., Ostadhassan M., Li C., Tamimi N. Rock physics and geomechanics of 3D printed rocks. ARMA 51st U. S. Rock Mechanics, Geomechanics Symposium, San Francisco, California, USA, 2017. pp. 1–8.
13. Gell E. M., Walley S. M, and Braithwaite C. H. Review of the validity of the use of artificial specimens for characterizing the mechanical properties of rocks. Rock Mechanics and Rock Engineering. 2019. Vol. 52(9). pp. 1–13.
14. Galchenko Yu. P., Eremenko V. A., Kosyreva M. A., Vysotin N. G. Features of secondary stress field formation under anthropogenic change in subsoil during underground mineral mining. Eurasian Mining. 2020. No. 1. pp. 9–13. DOI: 10.17580/em.2020.01.02
15. Myaskov A. V. Current problems in ecology and economy of subsoil use. GIAB. 2014. No. 2. pp. 157–160.
16. Myaskov A. V. Methods and techniques for ecological and economic justification of natural ecosystem preservation in mining regions. GIAB. 2011. No. 1. pp. 399–401.
17. Eremenko V. A., Galchenko Yu. P., Kosyreva M. A., Effect of mining geometry on natural stress field in underground ore mining with conventional and nature-like technologies. Journal of Mining Science. 2020. Vol. 56, No. 3. pp. 416–425.
18. Trubetskoy K. N., Myaskov A. V., Galchenko Yu. P., Eremenko V. A., Creation and justification of convergent technologies for underground mining of thick solid mineral deposits. Gornyi Zhurnal. 2019. No. 5. pp. 6–13. DOI: 10.17580/gzh.2019.05.01

Полный текст статьи Evolution of secondary stress field during underground mining of thick ore bodies
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