Название |
Impact of fracturing
on contour blasting efficiency in rock mass of dry dock |
Реферат |
Experience of contour blasting in dry dock granite gneiss shows that when using the same parameters (linear mass of explosive charge, distance between contour wells), they are effective in jointed rocks with a block size de = 0.5–1.5 m. In rock mass with de = 0.1–0.5 m, rocks constituting the blasting perimeter get damaged and collapsed, which leads to the need to develop blast designs for rock masses with varying degrees of fracturing. The review of literature sources shows that contour blast designs miss some effective parameters. The formulas for calculating the contour blasting parameters and the size of the damage zone (roof breaks) depending on the strength of rocks, jointing degree, as well on the detonation and geometry parameters of explosives charges are given. The contour blasting parameters and the size of the zone of roof breaks are calculated for dry dock granite gneiss rock mass of varying jointing degree. Taking into account the fact of disturbance caused by contour blasting to jointed rock mass, in order to ensure safety, in the upper and less critical part of the dry dock pit, in rocks of jointing categories I–II, the long-term stability is ensured by rock bolting and mesh reinforcement. In the lower and most critical part of the dry dock rock mass, regardless of the jointing category, the lining of slopes is made using monolithic reinforced concrete with a thickness of 500 mm. It is necessary to conduct further industrial tests of contour blasting in rock masses with varying degrees of jointing. |
Библиографический список |
1. Baron L. I., Turchaninov I. A., Klyuchnikov A. V. Damage of Rocks in Contour Blasting. Leningrad : Nauka, 1975. 339 p. 2. Etkin M. B., Azarkovich A. E. Blasting in Power Generation and Industrial Engineering. Moscow : Izdatelstvo Moskovskogo gosudarstvennogo gornogo universiteta, 2004. 317 p. 3. Kutuzov B. N. Methods of Conducting Blasting Operations. Part 2. Blasting in Mining and Industry : Textbook. 2nd ed. Moscow : Gornaya kniga, 2011. 512 p. 4. Kutuzov B. N. (Ed.). Shot-Firer’s Manual. Moscow : Nedra, 1988. 511 p. 5. Azarkovich A. E., Fishman Yu. A., Shuyfer M. I. Blasting Treatment of Foundations for Waterworks. Moscow : Energoatomizdat, 1990. 112 p. 6. Afonin V. G., Geiman L. M., Komir V. M. Reference Book on Blasting in Construction. 2nd revised and enlarged edition. Kiev : Budivelnik, 1982. 176 p. 7. Rakhmanov R. A., Alenichev I. A., Lushnikov V. N. Moderate blasting technologies: Experience and prospects for introduction in Polyus mines. Gornyi Zhurnal. 2021. No. 1. pp. 86–92. 8. Zoteev V. G., Morozov V. N., Yalunin V. V., Sazonov V. A., Kampel F. B. Experience of sloping at ultimate pit limit in hard rocks at Kovdor GOK. Chernaya metallurgiya. Byulleten nauchno-tekhnicheskoy i ekonomicheskoy informatsii. 1988. No. 7. pp. 39–42. 9. Zharikov S. N., Timofeev I. N., Gulenkov E. V., Bushkov V. K. Development of drilling and blasting works at the open pit limiting contour. Izvestiya vuzov. Gornyi zhurnal. 2018. No. 1. pp. 48–55. 10. Antonenko L. K., Zoteev V. G. Application of Special Sloping Technology in Hard Rocks in the USSR and Abroad : Review. Series: Mining Industry. Moscow, 1986. Vol. 1. 27 p. 11. Zharikov S. N., Kutuev V. A. Perimeter blasting in open pit mining and the concomitant issues. Gornyi Zhurnal. 2022. No. 9. pp. 52–56. 12. Tyupin V. N., Svyatetskiy V. S., Gorkovenko N. A. Method for seam damage of cracked rocks. Patent RF, No. 2485438. Applied: 19.12.2011. Published: 20.06.2013. Bulletin No. 17. 13. Brotanek I., Voda I. Contour Blasting in Mining and Construction. Moscow : Nedra, 1983. 144 p.
14. Jiang H., Li J., Wang M. Development of a test system for dynamic characteristics of blocky rock mass and its application. Journal of Vibration and Shock. 2018. Vol. 37, No. 21. pp. 29–34. 15. Yang L., Yang A., Chen S., Fang S., Huang C. et al. Model experimental study on the effects of in situ stresses on pre-splitting blasting damage and strain development. International Journal of Rock Mechanics and Mining Sciences. 2021. Vol. 138. ID 104587. 16. Nguyen D. A., Pham T. H., Le C. D., Tran Q. H., Tran D. B. Design of Pre Blasting ( Pre-Splitting) in Tan Cang Quarry NO.1 in Vietnam. Inżynieria Mineralna. 2020. Vol. 1, No. 2. pp. 155–162. 17. Silva J., Worsey T., Lusk B. Practical assessment of rock damage due to blasting. International Journal of Mining Science and Technology. 2019. Vol. 29, Iss. 3. pp. 379–385. 18. Baron V. L., Kantor V. Kh. Blasting technology and equipment in the USA. Moscow : Nedra, 1989. 376 p. 19. Kutuzov B. N., Tyupin V. N. Determination of deformation zone sizes in jointed rock mass in blasting. Izvestiya vuzov. Gornyi zhurnal. 1983. No. 4. pp. 53–58. 20. Tyupin V. N., Rubashkina T. I. Engineering formulas for dimensioning of deformation and damage zones in jointed rock mass under impact of blasting in quarries in Transbaikalia. Gornyi Zhurnal. 2021. No. 7. pp. 40–44. 21. Tyupin V. N. A simplified method for calculating the parameters of contour blasting in fractured rock formations. Vzryvnoe delo. 2024. No. 142/99. pp. 36–51. 22. Ruppenneyt K. V. Deformability of jointed rock masses. Moscow : Nedra, 1975. 223 p. 23. Rzhevskiy V. V., Kutuzov B. N., Yakobashvili O. P., Rubtsov V. K., Tsykin A. I. Seismic Determination Procedure of Rock Jointing to Assess Rock Blastability in Open Pit Mines. Moscow, 1970. 42 p. 24. Tyupin V. N., Yanitsky E. B., Polyakh A. E., Ignatenko I. M. Seismically safe parameters of confined blasting in levelling dry dock bottom. Eurasian Mining. 2022. No. 2. pp. 16–19. 25. Bolotova Yu. N. Seismically safe blasting methods for rocks in perimeter zone of open pit iron ore mines : Theses of Dissertation of Candidate of Engineering Sciences. Belgorod, 2023. 26 p. 26. Protodyakonov M. M., Teder R. I., Ilnitskaya E. I., Yakobashvili O. P., Safonova I. B. et al. Distribution and Correlation of Indexes of Physical Properties of Rocks : Reference Guide. Moscow : Nedra, 1981. 192 p. 27. Tyupin V. N., Lizunkin M. V., Lizunkin V. M. Determination of breaking zone of strained fractured array during simultaneous explosion of several parallel contiguous charges of blasting compounds. MIAB. 2015. No. 12. pp. 46–51. 28. Toksarov V. N., Pospelov D. A., Beltyukov N. L., Udartsev A. A. Determining modulus of deformation in surrounding rock mass of Sarbai iron ore deposit using borehole hydraulic jack. MIAB. 2023. No. 5. pp. 32–42. 29. Tyupin V. N. Initiation of residual stress zone during blasting in jointed granite rock mass in operation of Priargunsky Industrial Mining and Chemical Union. Gornyi Zhurnal. 2020. No. 10. pp. 60–64. 30. Ganopolskiy M. I., Smoliy N. I. Harmful Effects of Blasting in Industry. Blasting-Induced Seismic Effect. Moscow : Sputnik+, 2021. 247 p. 31. Sovmen V. K., Kutuzov B. N., Maryasov A. L., Ekvist B. V., Tokatenko A. V. Seismic Safety in Blasting : Tutorial. Moscow : Gornaya kniga, 2012. 228 p. 32. Tseytlin Ya. I., Smoliy N. I. Seismic and shock air waves of industrial blasts. Moscow : Nedra, 1981. 192 p. |