Журналы →  Gornyi Zhurnal →  2020 →  №2 →  Назад

DEVELOPMENT OF DEPOSITS
Название Deep-buried rock bolt reinforcement for wide-span junctions in the Aikhal Mine
DOI 10.17580/gzh.2020.02.10
Автор Lysenko M. V., Nikolenko O. A., Pozolotin A. S., Aikin A. V.
Информация об авторе

RANK Research Center–Mine Design Institute, Kemerovo, Russia:

M. V. Lysenko, Deputy Director of Science and Innovation, limak2@yandex.ru
A. S. Pozolotin, Director, Candidate of Engineering Sciences
A. V. Aikin, Head of Study and Innovation Department

Aikhal Mining and Processing Plant, ALROSA, Aikhal, Russia:

O. A. Nikolenko, Head of Department

Реферат

The study subject is the geomechanical behavior of boundary and reinforcement at junctions of underground excavations in difficult geological conditions of the Aikhal Mine, Aikhal Mining and Processing Plant, ALROSA. The study aims to improve stability of mine junctions by introducing the reinforcement technology with multifunction cable bolts AK01-25. The mining conditions in the Aikhal Mine are complicated by permafrost. In the course of heading, permafrost thaw results in unpredictable rockfalls. In connection with this, it was decided to undertake field trials of new reinforcement technologies for mine junctions. The trials were implemented in accordance with the developed engineering documents on reinforcement of junctions by multifunction cable bolts with regard to permafrost thaw for the effective life of an underground excavation. In December 2016 the junction of a ramp on level +60 m and a rehandling room to level +53 m was reinforced with multifunction cable bolts AK01-25. The base plates were represented by crown runners PGK15 and PGK15A. To monitor roof rock displacements, in the center of the junction, deep-seated benchmark RGZ was installed. Monitoring has been performed continuously since December 2016, and no displacements in the roof rocks have been recorded. The reinforcement technology with multifunction cable bolts in the wide-span junction reduces material expenses, specific content of metal and labor input of cable bolting, moreover, it enhances occupational safety owing to higher quality reinforcement and elimination of possible roof rockfalls.
The authors appreciate participation of P. Yu. Koveshnikov, Deputy Head of Department, Mirny Mining and Processing Plant, Mirny, Russia, in this study.

Ключевые слова Cable bolt, junction, mine, reinforcement, rockfalls
Библиографический список

1. Borshch-Komponiets V. I. Practical mechanics of rocks. Moscow : Gornaya kniga, 2013. 322 p.
2. Borovkov Yu. A. Rock mass behavior control in underground geotechnology : Teaching aid. Saint-Petersburg : Lan, 2018. 240 p.
3. Nikolskiy A. M., Ordin A. A., Kurilko A. S., Klishin V. I., Kulakov V. N. Non-pillar technology of underground mining of placer deposits in Yakutia. Novosibirsk : Nauka, 2014. 276 p.
4. Pivnyak G., Bondarenko V., Kovalevska I., Illiashov M. Mining of Mineral Deposits : Annual Scientific-Technical Collection. London : Taylor & Francis Group, 2013. 384 p.
5. Abzalov M. Applied Mining Geology. Series: Modern Approaches in Solid Earth Sciences. Cham : Springer International Publishing, 2016. Vol. 12. 443 p.
6. Zong-Xian Zhang. Rock Fracture and Blasting. Theory and Applications. Oxford : Butterworth-Heinemann, 2016. 528 p.
7. Hudson J. A., Xia-Ting Feng. Rock Engineering Risk. ISRM Book Series. London : Taylor & Francis Group, 2015. 572 p.
8. Bondarenko V., Kovalevska I., Symanovych H., Barabash M., Vivcharenko O. Geomechanics of Mine Workings Support Systems. Leiden : CRC Press/Balkema, 2018. 231 p.
9. Shirokov A. P., Pislyakov B. G. Roof support design for underground openings. 2nd enlarged and revised edition. Moscow : Nedra, 1988. 213 p.
10. Guidance on design of underground excavations and support estimation. Moscow : Stroyizdat, 1983. 272 p.
11. Razumov E. A., Eremenko V. A., Zayatdinov D. F., Matveev A. S., Grechishkin P. V., Pozolotin A. S. Calculation of rock bolting parameters for mine roadways in permafrost rocks. GIAB. 2013. No. 9. pp. 39–47.
12. SP 91.13330.2012. Underground mine workings. Moscow : Minregion Rossii. 2012. 58 p.
13. Guide for the choice of frame yielding support of excavations. 2nd enlarged and revised edition. Saint-Petersburg, 1991. 125 p.
14. Recommendations on optimal design of rock bolting length and mesh pattern for permanent underground openings and junctions with exposure span more than 5 m. Mirny, 2014.
15. Recommendations on rock bolting design for junction of a ramp on level +60.0 m with rehandling room to level +53.0 m (intersecting openings) using two-level rock bolting pattern in the Aikhal Mine, Aikhal Mining and Processing Plant of ALROSA, RANK 2. Kemerovo, 2016.
16. Rules of safety during mining operations and processing of solid minerals : Federal performance requirements in industrial safety area. Iss. 78. Series 03. Inter-branch documents for the issues of industrial safety and soil protection. Moscow : ZAO NTTs PB, 2019. 272 p.
17. Federal industrial safety code : Guidelines on rock bolting pattern design and application in coal mines. Iss. 42. Series. 05. Documents for safety, permitting and supervisory actions in coal industry. Moscow : ZAO NTTs PB, 2015. 186 p.
18. Pozolotin A. S., Grechishkin P. V., Opruk G. Yu., Zayatdinov D. F., Chugaynov S. S. Roof bolting support structures design improvement. Ugol. 2016. No. 5. pp. 66–69.

Language of full-text русский
Полный текст статьи Получить
Назад