ArticleName |
Experience of geotechnical core logging of borehole environment:
a case-study of carbonate rocks |
ArticleAuthorData |
Petroleum High School–Almetyevsk State Technological University, Almetyevsk, Russia1 ; College of Mining, National University of Science and Technology–MISIS, Moscow, Russia2
Vysotin N. G.1, 2, Researcher, Candidate of Engineering Sciences, kalgani@yandex.ru
College of Mining, National University of Science and Technology–MISIS, Moscow, Russia Eremenko V. A., Professor, Doctor of Engineering Sciences Kosyreva M. A., Post-Graduate Student |
References |
1. Eremenko V. A., Khazhyylai Ch. V., Umarov A. R., Lagutin D. V. Quantitative assessment of rock mass stress–strain behavior at Severomuysky Tunnel. Gornyi Zhurnal. 2023. No. 1. pp. 58–64. 2. Guide for Core Logging. Cardiff, UK: SRK Consulting Engineers and Scientists, 2009. Available at: https://www.geokniga.org/bookfiles/geoknigasrkukgeotechloggingmanual-1100609rus.pdf (accessed: 11.10.2024). 3. Khazhyylay Ch. V., Eremenko V. A. Kosyreva M. A.,Yanbekov A. M. In-situ rock mass failure envelope plotting using the Hoek-Brown criterion and RocData software toolkit. MIAB. 2018. No. 12. pp. 92–101. 4. Bieniawski Z. T. Classification of Rock Masses for Engineering: The RMR System and Future Trends. Rock Testing and Site Characterization. Comprehensive Rock Engineering: Principles, Practice and Projects. 1993. Vol. 3. pp. 553–573. 5. Barton N., Liem R., Lunde J. Engineering classification of rock masses for the design of tunnel support. Rock mechanics. 1974. Vol. 6. № 4. pp. 189–236. 6. Barton N. Application of Q-system and index tests to estimate shear strength and deformability of rock masses. Workshop on Norwegian Method of Tunneling. New Delhi, 1993. pp. 66–84. 7. Hoek E., Carter T. G., Diederichs M. S. Quantification of the Geological Strength Index Chart. 47th U.S. Rock Mechanics/Geomechanics Symposium. San Francisco, 2013. 8. Hoek E., Martin C. D. Fracture initiation and propagation in intact rock — A review. Journal of Rock Mechanics and Geotechnical Engineering. 2014. Vol. 6, Iss. 4. pp. 287–300. 9. Economides M., Olini R., Valko P. Unified Fracture Design: Bridging the Gap between Theory and Practice. Izhevsk : Institut computernukh issledoveniy, 2007. 234 p. 10. Abdulmalek A., Elkatatny S., Abdulwahab A., Mahmoud M., Abdulraheem A. New Model for Pore Pressure Prediction While Drilling Using Artificial Neural Networks. Arabian Journal for Science and Engineering. 2019. Vol. 44. pp. 6079–6088. 11. Heriyadi B., Prengki I., Prabowo H. Analysis of Collapse Load and Open Hole Evaluation Based on Rock Mass Ratting (RMR) Method in Underground Mining. Journal of Physics: Conference Series. 2019. Vol. 1387. ID 012104. 12. Jian-yun Lin, Yu-jun Zuo, Jian Wang, Lu-jing Zheng, Bin Chen et al. Stability analysis of underground surrounding rock mass based on block theory. Journal of Central South University. 2020. Vol. 27, Iss. 10. pp. 3040–3052. 13. Zhigulskii S. V., Lukin S. V. Evaluation of Conductive Fracture Aperture Based on a Detailed Geomechanical Model: Myth or Reality in the Context of Complex Fractured Reservoir? Society of petroleum engineers — SPE Russian petroleum technology conference 2019, RPTC 2019. 2019. Moscow. 14. Zhigulskii S. V., Tikhotsky S. A. Evaluation of the crack system’s openness under conditions of changes in the crack roughness coefficient based on data on the stress-strain state. Bureniye I neft. 2020. No. 7-8. pp. 30–38. 15. Pereira F. C., Lima T., Chaves S. S., Vilca Y. C., Canabrava L. P. Stability analysis of free span in excavations with diameter greater than 10 meters—Study case in the córrego do sítio mine. Rock Mechanics for Natural Resources and Infrastructure Development–Full Papers : Proceedings of the 14th International Congress on Rock Mechanics and Rock Engineering. Ser. Proceedings in Earth and Geosciences. London : CRC Press, 2020. Vol. 6. pp. 878–883. 16. Min K.B., Rutqvist J., Tsang C.F., Lanru J. Stress-dependent permeability of fractured rock masses: A numerical study. International Journal of Rock Mechanics and Mining Sciences. 2004. Vol. 41, Iss. 7. pp. 1191–1210. 17. Youngsoo Song, Sungjun Jun, Yoonsu Na, Kyuhyun Kim, Youngho Jang, et al. Geomechanical challenges during geological CO2 storage: A review. Chemical Engineering Journal. 2023. Vol. 456. ID 140968. 18. Zoback M. D., Healy J. H. Friction, faulting, and “in situ” stresses. Annales of geophysics. 1984. Vol. 2. pp. 689–698. |