Methodological principles and recommendations for the development of innovative technologies when maintaining reusable mine workings in the western Donbas Mines
DOI:
https://doi.org/10.33271/crpnmu/68.067Keywords:
rockmass, fastening system, repeatedly exploited mine working, optimization principles, stress-strain stateAbstract
Purpose. Substantiate the methodological principles of resource-saving stability increase of repeatedly exploited mine workings in a weakly metamorphosed coal-bearing mass by optimizing the deformation-strength characteristics of fastening structures in accordance with the geomechanical conditions of their maintenance. Methods. An integrated method is used, which includes the analysis of geomechanically processes, interaction modes of rock masses with fastening structures and methods for their optimization, experimental mining research, as well as substantiation of methodological approaches to experimental verification on the degree of conformity of the analytical development results. Findings. A new methodological principle for performing mining research has been obtained with the identification of three main peculiarities and implementation during large-scale measurements. Using specific examples, with the help of analysis and on the basis of influencing factors, the possibility of achieving the deformation-strength characteristics of fastening structures at optimal values of load and displacement has been proved. Favorable medium-intensity conditions, complex mining-geological conditions and indicators characterizing them have been determined. Originality. The schemes for optimizing the fastening system interaction with a rock mass have been substantiated and calculated, aimed at minimizing the intensity of rock pressure manifestations. Multifactorial computational experiments have been conducted to determine various areas of expedient application of specific fastening structures. Practical implications. A comparative analysis of the reliability and results of analytical research has been performed on the basis of the combined results of mine surveying measurements in existing mine workings and on the basis of the technical documentation of mine surveying at already mined-out extraction sites. It is aimed to select rational parameters for fastening the repeatedly exploited mineworkings, depending on the mining-geological conditions for their maintenance.References
Word Coal. (2020). WCA comments on IEA Energy Technology Perspectives Report . https://www.worldcoal.com/coal/14092020/wca-comments-on-iea-energy-technology-perspectives-report/
Statisticheskiy yezhegodnik mirovoy energetiki. (2020). Vnutrennee potreblenie kamennogo uglya i lignita . https://yearbook.enerdata.ru/coal-lignite/coal-world-consumption-data.html
Kovalevska, I., Zhuravkov, M., Chervatiuk, V., Husiev, O., &Snihur, V. (2019). Generalization of trends in the influence of geomechanics factors on the choice of operation modes for the fastening system in the preparatory mine workings. Mining of Mineral Deposits , 13 (3), 1-11. https://doi.org/10.33271/mining13.03.001
Lozynskyi, V., Saik, P., Petlovanyi, M., Sai, K., &Malanchyk, Z. (2018). Analytical Research of the Stress-Deformed State in the Rock Massif Around Faulting. International. Journal of Engineering Research in Africa , (35), 77-88. https://doi.org/10.4028/www.scientific.net/JERA.35.77
Bondarenko,V., Kovalevska, I. Symanovych, G., Sotskov, V., &Barabash, M. (2018). Geomechanics of interference between the operation modes of mine working support elements attheir loading. Mining Science , (25), 219-235. https://doi.org/10.5277/msc182515
Barabash, M., Salieiev, I., &Symanovych, H. (2021). Technical and technological aspects of the coal mine closure based on the geomechanical component assessment. Mining of Mineral Deposits , 15 (3), 7-15. https://doi.org/10.33271/mining15.03.007
Małkowski, P., Niedbalski, Z., Majcherczyk, T., & Bednarek, Ł. (2020). Underground monitoring as the best way of roadways support design validation in a long time period. Mining of Mineral Deposits , 14 (3), 1-14. https://doi.org/10.33271/mining14.03.001
Симанович,Г.А. (1993). Управление режимами взаимодействия породного массива с крепью горных выработок на основе регулирования ее деформационно-силовой характеристикой . Дисс. на соискание учен. степени доктора техн. наук. Спец.: 05.15.02; 05.15.11. ИГТМ НАН Украины
Ковалевская,И.А. (2004). Геомеханика управления устойчивостью пространственной системы «массив – упрочненные породы – крепь подземных выработок» . Дисс. на соисканиеучен. степени доктора техн. наук. Спец.: 05.15.11. НГУ
СОУ 10.1.00185790.011:2007. (2008). Підготовчі виробки на пологих пластах. Вибір кріплення, способів і засобів охорони. Стандарт Мінвуглепрому України. Видавництво ДонВУГІ
Bondarenko V., Symanovych, H., Kicki J., Barabash, M., Salieiev, I. (2019). The influence of rigidity of the collapsed roof rocks in the mined-out space on the state of the preparatory mine workings. Mining of Mineral Deposits , 13 (2), 27-33. https://doi.org/10.33271/mining13.02.027
Kovalevska, I., Barabash, M., & Snihur, V. (2018). Development of a research methodology and analysis of the stress state of a parting under the joint and downward mining of coal seams. Mining of Mineral Deposits , 12 (1), 76-84. https://doi.org/10.15407/mining12.01.076
Fomychov, V., Fomychova, L., Khorolskyi, A., Mamaikin, O. & Pochepov, V. (2020). Determining optimal border parameters to design a reused mine working. ARPN Journal of Engineering and Applied Sciences , 15 (24), 3039–3049
Общие методические положения комплексного исследования проблем горной геомеханики . (1970) . Горное давление, сдвижение горных пород и методика маркшейдерских работ. ВНИМИ
Бондаренко, В.И., Ковалевская, И.А., Симанович, Г.А., Барабаш, М.В., Снигур, В.Г., & Гусев, А.С. (2017). Комбинированные анкерные системы для повторного использования горных выработок. ЛизуновПресс
НПАОП 10.0-1.01-10. (2010). Правила безпеки у вугільних шахтах. Редакція журналу «Охорона праці»
Downloads
Published
Issue
Section
License
All articles are published under the Creative Commons Attribution License (CC BY 4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Authors retain copyright and grant the journal right of first publication.
Authors are permitted and encouraged to deposit the final published version of their article, or the Author's Accepted Manuscript (AAM), in institutional or subject-specific open-access repositories (including the university's own institutional repository, CORE, Zenodo, or Figshare), ensuring maximum visibility, accessibility, and impact of the publication.