- Abstract:
- The article discusses the use of vibration technology (VT) sensors for monitoring deformations and displacements of the rock mass in the conditions of open-pit mining at the Natalka deposit. The authors have confirmed the high efficiency of using VT sensors to detect changes in the rock mass. The study has revealed significant deformation activity in the hazardous areas of the quarry, which demonstrates the potential of VT sensors. The study has also demonstrated the effectiveness of monitoring in identifying areas with intense deformation activity, which allows for timely response and prevention of accidents.
- Keywords:
- Natalka deposit, vibration technology sensors, deformation monitoring, rock mass displacement, open-pit mining operation, deformation activity, hazardous pit zones
- For citation:
- Arno V.V., Kolesnichenko E.P., Garifulina I.Yu., Lomakina N.E., Sharov P.E. Application of vibration technology sensors for monitoring deformations and displacements of rock mass in open-pipe mining of deposits (on the example of the Natalka deposit). Mine Surveying and Subsurface Use. 2025;25(6): 78-83. (In Russ.). https://doi. org/10.56195/20793332-2025-25-6-78-83.
- Information about the authors:
-
- Veronika V. Arno – Cand. Sci. (Eng.), Associate Professor, Northeastern State University, Polytechnic Institute, 685030, Magadan, Russian Federation; e-mail:
This email address is being protected from spambots. You need JavaScript enabled to view it. - Eva P. Kolesnichenko – Student of the Field of Training "State and Municipal Audit", Higher School of Economics, Lomonosov Moscow State University, 119991, Moscow, Russian Federation; e-mail:
This email address is being protected from spambots. You need JavaScript enabled to view it. - Irina Yu. Garifulina – Senior Lecturer of the Department of Geology and Mining. Northeastern State University, Polytechnic Institute, 685030, Magadan, Russian Federation; e-mail: irina-kajtukova@ yandex.ru
- Natalia E. Lomakina – senior lecturer of the Mining Department, Northeastern State University Polytechnic Institute, 685030, Magadan, Russian Federation; e-mail:
This email address is being protected from spambots. You need JavaScript enabled to view it. - Pavel E. Sharov – Student of the Mining Department, North-Eastern State University Polytechnic Institute, 685030, Magadan, Russian Federation; e-mail:
This email address is being protected from spambots. You need JavaScript enabled to view it.
- Veronika V. Arno – Cand. Sci. (Eng.), Associate Professor, Northeastern State University, Polytechnic Institute, 685030, Magadan, Russian Federation; e-mail:
- References:
-
- 1. Захаров В.Н., Гвишиани А.Д., Вайсберг Л.А. и др. Большие данные и устойчивое функционирование горнотехнических систем. Горный журнал. 2021; 11: 45-52. Zakharov V. N., Gvishiani A. D., Vaisberg L. A., et al. Big Data and Sustainable Functioning of Mining Systems. Mining Journal. 2021; 11: 45-52 (In Russ.). https://doi.org/10.17580/ gzh.2021.11.06.
- 2. Захаров В.Н., Каплунов Д.Р., Клебанов Д.А. и др. Методические подходы к стандартизации сбора, хранения и анализа данных при управлении горнотехническими системами. Горный журнал. 2022; 12: 55-61. Zakharov V. N., Kaplunov D. R., Klebanov D. A., et al. Methodological approaches to standardization of data collection, storage and analysis in the management of mining systems. Mining Journal. 2022; 12: 55-61. (In Russ.). https://doi.org/10.17580/gzh.2022.12.10.
- 3. Захаров В.Н., Клебанов Д.А., Макеев М.А. и др. Анализ методов подготовки и преобразования информации, поступающей в хранилища данных для эффективного управления горнотехнической системой. Горная промышленность. 2023; 5S: 10-17. Zakharov V. N., Klebanov D.A., Makeev M.A., et al. Analysis of Methods for Preparing and Converting Information Entering Data Stores for Effective Management of a Mining System. Mining Industry. 2023; 5S: 10-17. (In Russ.). https://doi.org/10.30686/1609-9192-2023-5S-10-17.
- 4. Каган М.М., Чернобров Д.С. Мониторинг сейсмоактивности прибортового массива карьера на основе сейсморегистраторов в глубоких скважинах за конечным контуром. Горная промышленность. 2023; S1: 84-88. Kagan M.M., Chernobrov D.S. Monitoring of Seismic Activity in the Quarry’s Near-Surface Massif Based on Seismometers in Deep Wells Beyond the Final Contour. Mining Industry. 2023; S1: 84-88. (In Russ.). https://doi.org/10.30686/1609-9192-2023-S1-84-88.
- 5. Рассказов И.Ю., Федотова Ю.В., Аникин П.А. и др. Совершенствование методов и средств геомеханического мониторинга на основе цифровых технологий. Горная промышленность. 2023; 5S: 18-24. Rasskazov I.Yu., Fedotova Yu.V., Anikin P.A., et al. Improvement of Methods and Means of Geomechanical Monitoring Based on Digital Technologies. Mining Industry. 2023; 5S: 18-24. (In Russ.). https://doi.org/10.30686/1609-9192-2023-5S-18-24.
- 6. Рыбин В.В., Константинов К.Н., Каган М.М. и др. Принципы организации комплексной системы мониторинга устойчивости объектов горнодобывающего предприятия. Горный журнал. 2020; 1: 53-57. Rybin V.V., Konstantinov K.N., Kagan M.M., et al. Principles of Organizing an Integrated System for Monitoring the Sustainability of Mining Enterprises. Mining Journal. 2020; 1: 53-57. (In Russ.). https://doi.org/10.17580/gzh.2020.01.10.
- 7. Рыбин В.В., Константинов К.Н., Наговицын О.В. Структура комплексной системы мониторинга устойчивости объектов открытых горных работ с применением цифровых технологий. Физико-технические проблемы разработки месторождений полезных ископаемых. 2021; 4: 70-77. Rybin V.V., Konstantinov K.N., Nagovitsyn O.V. The structure of an integrated system for monitoring the stability of open-pit mining facilities using digital technologies. Physical and Technical Problems of Mineral Deposits Development. 2021; 4: 70-77. (In Russ.). https://doi.org/10.15372/ FTPRPI20210407.
- 8. Рыбин В.В., Константинов К.Н., Розанов И.Ю. Многоуровневый подход к организации мониторинга устойчивости бортов карьеров. Физико-технические проблемы разработки месторождений полезных ископаемых. 2021;5:106-113. Rybin V.V., Konstantinov K.N., Rozanov I.Yu. Multilevel a pproach to the organization of monitoring the stability of quarry slopes. Physical and technical problems of mining. 2021;5:106-113. (In Russ.). https://doi.org/10.15372/FTPRPI20210510.
- 9. Рыльникова М.В., Клебанов Д.А., Рыбин В.В. и др. Контроль и управление геомеханическим состоянием и устойчивостью конструктивных элементов горнотехнических конструкций карьеров на основе сбора и анализа больших данных. Горная промышленность. 2024; 4: 121-128. Rylnikova M.V., Klebanov D.A., Rybin V.V., et al. Control and Management of the Geomechanical State and Stability of Structural Elements of Mining Structures in Quarries Based on the Collection and Analysis of Big Data. Mining Industry. 2024; 4: 121-128. (In Russ.). https://doi. org/10.30686/1609-9192-2024-4-121-128.
- 10. Хакулов В.А., Шаповалов В.А., Игнатов В.Н. и др. Совершенствование методологии мониторинга геомеханического состояния и трансформации свойств массивов горных пород для обеспечения безопасности и эффективности геотехнологии. Горный информационно- аналитический бюллетень. 2023; 9: 68-83. Khakulov V.A., Shapovalov V.A., Ignatov V.N., et al. Improving the Methodology of Monitoring the Geomechanical State and Transformation of Rock Mass Properties to Ensure the Safety and Efficiency of Geotechnologies. Mining Informational and Analytical Bulletin. 2023; 9: 68-83. (In Russ.). https://doi.org/10.25018/0236_1493_2023_9_0_68.
- 11. Barnewold L., Lottermoser B.G. Identification of digital technologies and digitalisation trends in the mining industry. International Journal of Mining Science and Technology. 2020; 30 (6): 747-757. https://doi.org/10.1016/j.ijmst.2020.07.003.
- 12. He M., Xia H., Jia X., et al. Studies on classification, criteria and control of rockbursts. Journal of Rock Mechanics and Geotechnical Engineering. 2012; 4 (2): 97-114. https://doi.org/10.3724/SP.J.1235.2012.00097.
- 13. Jiang F.F., Zhou H., Liu C., et al. Progress, prediction and prevention of rockbursts in underground metal mines. China Journal of Rock Mechanic Engineering. 2019; 38 (5): 956-972.
- 14. Keneti A., Sainsbury B.A. Review of published rockburst events and their contributing factors. Engineering Geology. 2018; 246: 361-373. https:// doi.org/10.1016/J.ENGGEO.2018.10.005.
- 15. Manchao H., Fuqiang R., Dongqiao L. Rockburst mechanism research and its control. International Journal of Mining Science and Technology. 2018; 28 (5): 829-837. https://doi.org/10.1016/j.ijmst.2018.09.002.
