| ArticleName |
Прогнозирование участков концентрации
напряжений в массиве горных пород по данным скоростей
распространения продольных волн в процессе регионального
прогноза удароопасности микросейсмическим методом |
| ArticleAuthorData |
ООО «ИНГОРТЕХ», Екатеринбург, Россия
Уразбаев Т. Р., ведущий инженер-геофизик, UrazbaevTR@ingortech.ru
ООО «Институт Гипроникель», Санкт-Петербург, Россия Трофимов А. В., директор Департамента научно-технического развития, канд. техн. наук
Центр геодинамической безопасности ЗФ ПАО «ГМК «Норильский никель», Норильск, Россия
Родионова Е. В., начальник отдела непрерывного мониторинга и контроля горного давления Терещенко М. В., ведущий инженер отдела непрерывного мониторинга и контроля горного давления |
| References |
1. Zhang C., Feng X.-T., Zhou H., Qiu S., Wu W. Case histories of four extremely intense rockbursts in deep tunnels. Rock Mechanics and Rock Engineering. 2012. Vol. 45, Iss. 3. pp. 275–288. 2. Zhou J., Li X., Mitri H. S. Evaluation method of rockburst: State-of-the-art literature review. Tunnelling and Underground Space Technology. 2018. Vol. 81. pp. 632–659. 3. Tyupin V. N. Geomechanical behavior of jointed rock mass in the large-scale blast impact zone. Eurasian Mining. 2020. No. 2. pp. 11–14. 4. Ge X., Xiao Y., Fan Y., Liu J., Zhang Y. Laboratory investigation of the relationship between static rock elastic parameters and low field nuclear magnetic resonance data. International Journal of Rock Mechanics and Mining Sciences. 2020. Vol. 127. ID 104207. 5. Wang Y., Huang J., Wang G. Numerical analysis for mining-induced stress and plastic evolution involving influencing factors: High in situ stress, excavation rate and multilayered heterogeneity. Engineering Computations. 2022. Vol. 39, No. 8. pp. 2928–2957. 6. Trofimov A. V., Kirkin A. P., Rumyantsev A. E., Yavarov A. V. Use of numerical modelling to determine optimum overcoring parameters in rock stress-strain state analysis. Tsvetnye Metally. 2020. No. 12. pp. 22–27. 7. Zubov V. P., Trofimov A. V., Kolganov A. V. Influence of ground control features on indicators of dilution in mines of the Talanakh ore province. MIAB. 2024. No. 12-1. pp. 87–106. 8. Kholodilov A. N., Istomin R. S., Kirilenko V. I. Improvement technique for manufacturing equivalent materials for modeling nonlinear geomechanical processes in underground mineral mining. MIAB. 2024. No. 10. pp. 108–122. 9. Sergunin M. P., Alborov A. E., Andreev A. A., Buslova M. A. Stress assessment ahead of stoping front with widening stress relief zone—A case study of the Oktyabrsky and Talnakh deposits. Gornyi Zhurnal. 2020. No. 6. pp. 38–41. 10. Feng X.-T., Liu J., Chen B., Xiao Y., Feng G. et al. Monitoring, warning, and control of rockburst in deep metal mines. Engineering. 2017. Vol. 3, Iss. 4. pp. 538–545.
11. Li T., Wang Z., Yu N., Wang R., Wang Y. Numerical study of pore structure effects on acoustic logging data in the borehole environment. Fractals. 2020. Vol. 28, No. 3. ID 2050049. 12. 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. 13. Vennes I., Mitri H., Chinnasane D. R., Yao M. Effect of stress anisotropy on the efficiency of large-scale destress blasting. Rock Mechanics and Rock Engineering. 2021. Vol. 54, Iss. 1. pp. 31–46. 14. Karpov G. N., Kovalski E. R., Smychnik A. D. Determination of rock destressing parameters at the ends of disassembling room. MIAB. 2019. No. 8. pp. 95–107. 15. Razumov E. E., Prostov S. M., Mulev S. N., Rukavishnikov G. D. Seismic information processing algorithms. MIAB. 2022. No. 2. pp. 17–29. 16. Marysyuk V. P., Tereschenko M. V., Tsirel S. V., Mulev S. N. Features of seismic activity in Skalistaya mine. Gornyi Zhurnal. 2016. No. 7. pp. 14–18. 17. Razumov E. E., Rukavishnikov G. D., Mulev S. N., Prostov S. M. Seismic activity in rock mass during mining operations in Vorkutaugol’s Komsomolskaya Mine. MIAB. 2022. No. 1. pp. 104–114. |