Библиографический список |
1. Lovchikov A. V. Mine tectonic shocks in Russia: Statistics and analysis. Journal of Mining Science. 1997. Vol. 33, No. 2. pp. 120–128. 2. Feit G. N., Malinnikova O. N., Zykov V. S., Rudakov V. A. Prediction of rockburst and sudden outburst hazard on the basis of estimate of rock-mass energy. Journal of Mining Science. 2002. Vol. 38, No. 1. pp. 61–63. 3. Liu Y., Zhang Y., Su P., Zhang G., Qiu P. et al. Risk Prediction of rock bursts and large deformations in YL Tunnel of the Chongqing–Kunming High-Speed Railway. Frontiers. 2022. Vol. 10. ID 892606. 4. Wu S.-K., Zhang J.-W., Song Z.-X., Fan W.-B., Zhang Y. et al. Review of the development status of rock burst disaster prevention system in China. Journal of Central South University. 2023. Vol. 30, Iss. 11. pp. 3763–3789. 5. Villalobos F. A., Villalobos S. A., Aguilera L. E. Evaluation of rockburst energy capacity for the design of rock support systems for different tunnel geometries at El Teniente copper mine. Journal of the Southern African Institute of Mining and Metallurgy. 2022. Vol. 122, No. 9. pp. 505–516. 6. Mazaira A., Konicek P. Intense rockburst impacts in deep underground construction and their prevention. Canadian Geotechnical Journal. 2015. Vol. 52, No. 10. pp. 1426–1439. 7. Li J., He M., Liu D., Elmo D., Zhang J. Comparative experimental investigation on true triaxial double-sided fast unloading rockburst and biaxial compression under high stress. Canadian Geotechnical Journal. 2023. Vol. 60, No. 8. pp. 1202–1215. 8. Shabarov A. N., Kuranov A. D., Kiselev V. A. Assessing the zones of tectonic fault influence on dynamic rock pressure manifestation at Khibiny deposits of apatite–nepheline ores. Eurasian Mining. 2021. No. 2. pp. 3–7. 9. Zhou J., Shi X.-Z., Dong L., Hu H.-Y., Wang H.-Y. Fisher discriminant analysis model and its application for prediction of classification of rockburst in deep-buried long tunnel. Journal of Coal Science and Engineering (China). 2010. Vol. 16, No. 2. pp. 144–149. 10. Waqar M. F., Guo S., Qi S. A comprehensive review of mechanisms, predictive techniques, and control strategies of rockburst. Applied Sciences. 2023. Vol. 13, No. 6. ID 3950. 11. Petukhov I. M., Batugina I. M. Soil Geodynamics. 2nd revised and enlarged edition. Moscow : Nedra kommyunikeyshens LTD, 1999. 256 p. 12. Kuznetsov N. N. Investigation of specific energy of strong rock failure to assess rockburst hazard as a case-study of mineral deposit in the Kola Region : Theses of Dissertation of Candidate of Engineering Sciences. Apatity, 2021. 27 p. 13. Basalaeva P. V., Kuranov A. D. Influence of dip angle of lithologically nonuniform interburden on horizontal mine opening stability during driving. MIAB. 2024. No. 3. pp. 17–30. 14. Askaripour M., Saeidi A., Rouleau A., Mercier-Langevin P. Rockburst in underground excavations: A review of mechanism, classification, and prediction methods. Underground Space. 2022. Vol. 7, Iss. 4. pp. 577–607. 15. Ma K., Zhang Ji., Zhang J., Wang Z., Feng J. Longitudinal connection effect on initial support steel frames in tunnels—Take the traffic tunnels as examples. Underground Space. 2022. Vol. 7, Iss. 4 . pp. 608–622. 16. Belyakov N. A., Morozov K. V., Emelyanov I. A. Data processing in full-scale in-situ stress testing by overcoring. Gornyi Zhurnal. 2023. No. 5. pp. 89–96. 17. Durrheim R. J., Roberts M. K. C., Haile A. T., Hagan T. O., Jager A. J. et al. Factors influencing the severity of rockburst damage in South African gold mines. Journal of The South African Institute of Mining and Metallurgy. 1998. Vol. 98, Iss. 2. pp. 53–57. 18. Ortlepp W. D., Stacey T. R. Rockburst mechanisms in tunnels and shafts. Tunnelling and Underground Space Technology. 1994. Vol. 9, No. 1. pp. 59–65. 19. Stavrogin A. N., Tarasov B. G. Experimental Physics and Mechanics of Rocks. Saint-Petersburg : Nauka, 2001. 342 p. 20. Tarasov B. G. Paradoxes of strength and brittleness of rocks at seismic depths. Gornyi Zhurnal. 2020. No. 1. pp. 11–17. 21. Kotikov D. A., Shabarov A. N., Tsirel S. V. Connecting seismic event distribution and tectonic structure of rock mass. Gornyi Zhurnal. 2020. No. 1. pp. 28–32. 22. Feng J., Yan C., Ye L., Ding X., Zhang J. et al. Evaluation of installation timing of initial ground support for large-span tunnel in hard rock. Tunnelling and Underground Space Technology. 2019. Vol. 93. ID 103087. 23. Ye S., Luo Y., Wu J., Yan X., Wang H. et al. Three-dimensional numerical modeling of land subsidence in Shanghai, China. China Hydrogeol Journal. 2016. Vol. 24. pp. 695–709. 24. Kazanin O. I., Yaroshenko V. V. Decrease in coal losses during mining of contiguous seams in the near-bottom part at Vorkuta deposit. Journal of Mining Institute. 2020. Vol. 244. pp. 395–401. 25. Sidorov D. V., Potapchuk M. I., Sidlyar A. V., Kursakin G. A. Assessment of rock-burst hazard in deep layer mining at Nikolayevskoye Field. Journal of Mining Institute. 2019. Vol. 238. pp. 392–398. 26. Nguyen A.-D., Kim Y.-S., Kang G.-O., Kim H.-J. Numerical analysis of static behavior of caisson-type quay wall deepened by grouting rubble-mound. International Journal of Geo-Engineering. 2021. Vol. 12. DOI: 10.1186/s40703-020-00130-3 27. Fathi Salmi E., Nazem M., Karakus M. Numerical analysis of a large landslide induced by coal mining subsidence. Engineering Geology. 2017. Vol. 217. pp. 141–152. 28. Zubov V. P., Golubev D. D. Prosp ects for the use of modern technological solutions in the flat-lying coal seams development, taking into account the danger of the formation of the places of its spontaneous combustion. Journal of Mining Institute. 2021. Vol. 250. pp. 534–541. 29. Gendler S. G., Vasilenko T. A., Stepantsova A. Yu. Investigation of mass transfer of hard coal during its transportation to the place of temporary storage. MIAB. 2023. No. 9-1. pp. 135–148. 30. Morozov K. V., Demekhin D. N., Kotlov S. N., Abashin V. I. In-situ permeability testing of deep-level potash salt rocks with a view to creating water retaining walls. Gornyi Zhurnal. 2023. No. 5. pp. 25–31. 31. Litvinenko V. S., Dvoynikov M. V., Trushko V. L. Elaboration of a conceptual solution for the development of the Arctic shelf from seasonally flooded coastal areas. International Journal of Mining Science and Technology. 2022. Vol. 32, Iss. 1. pp. 113–119. 32. Kazanin O. I., Ilinets A. A. Ensuring the excavation workings stability when developing excavation sites of flat-lying coal seams by three workings. Journal of Mining Institute. 2022. Vol. 253. pp. 41–48. 33. Qiu J., Li X., Li D., Zhao Y., Hu C. et al. Physical model test on the deformation behavior of an underground tunnel under blasting disturbance. Rock Mechanics and Rock Engineering. 2021. Vol. 54, Iss. 1. pp. 91–108. 34. Potapchuk M. I., Rasskazov I. Yu., Sidlyar A. V., Lomov M. A., Rasskazov M. I. Geomechanical assessment of safe technologies for underground mining beneath open pit mines. MIAB. 2022. No. 1. pp. 84–96. 35. Kholmskiy A. V., Fomin S. I. Substantiation of blast-free technology for mining rockburst-hazardous bauxite deposits using hydraulic breakers. MIAB. 2022. No. 7. pp. 40–54. 36. Zuev B. Yu. Methodology of modeling nonlinear geomechanical processes in blocky and layered rock masses on models made of equivalent materials. Journal of Mining Institute. 2021. Vol. 250. pp. 542–552. |