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Nizametdinov, Farit; Nizametdinov, Rinat; Akhmatnurov, Denis; Zamaliyev, Nail; Mussin, Ravil; Ganyukov, Nikita; Skrzypkowski, Krzysztof; Korzeniowski, Waldemar; Stasica, Jerzy; Rak, Zbigniew (2025) Geomechanical Basis for Assessing Open-Pit Slope Stability in High-Altitude Gold Mining. Applied Sciences, 15 (15). doi:10.3390/app15158372

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Reference TypeJournal (article/letter/editorial)
TitleGeomechanical Basis for Assessing Open-Pit Slope Stability in High-Altitude Gold Mining
JournalApplied Sciences
AuthorsNizametdinov, FaritAuthor
Nizametdinov, RinatAuthor
Akhmatnurov, DenisAuthor
Zamaliyev, NailAuthor
Mussin, RavilAuthor
Ganyukov, NikitaAuthor
Skrzypkowski, KrzysztofAuthor
Korzeniowski, WaldemarAuthor
Stasica, JerzyAuthor
Rak, ZbigniewAuthor
Year2025 (July 28)Volume15
Issue15
PublisherMDPI AG
DOIdoi:10.3390/app15158372Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID18781271Long-form Identifiermindat:1:5:18781271:1
GUID0
Full ReferenceNizametdinov, Farit; Nizametdinov, Rinat; Akhmatnurov, Denis; Zamaliyev, Nail; Mussin, Ravil; Ganyukov, Nikita; Skrzypkowski, Krzysztof; Korzeniowski, Waldemar; Stasica, Jerzy; Rak, Zbigniew (2025) Geomechanical Basis for Assessing Open-Pit Slope Stability in High-Altitude Gold Mining. Applied Sciences, 15 (15). doi:10.3390/app15158372
Plain TextNizametdinov, Farit; Nizametdinov, Rinat; Akhmatnurov, Denis; Zamaliyev, Nail; Mussin, Ravil; Ganyukov, Nikita; Skrzypkowski, Krzysztof; Korzeniowski, Waldemar; Stasica, Jerzy; Rak, Zbigniew (2025) Geomechanical Basis for Assessing Open-Pit Slope Stability in High-Altitude Gold Mining. Applied Sciences, 15 (15). doi:10.3390/app15158372
In(2025, July) Applied Sciences Vol. 15 (15). MDPI AG

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Fisenko, G.L. (1965). Stability of Open-Pit Slopes and Dumps, Moscow State Mining University Press. (In Russian).
Popov, I.I., Nizametdinov, F.K., Okatov, R.P., and Dolgonosov, V.N. (1997). Natural and Technogenic Foundations for Managing the Stability of Pit Benches and Walls, Gylym. (In Russian).
Aziyarudproekt (2009). Working Project of the Mining Complex of the Open-Pit Mine at the Bozymchak Deposit, Aziyarudproekt. (In Russian).
Ministry of Emergency Situations of the Kyrgyz Republic (2018). Monitoring and Forecasting of Hazardous Processes and Phenomena in the Territory of the Kyrgyz Republic, Ministry of Emergency Situations of the Kyrgyz Republic. [15th ed.]. (In Russian).
Nizametdinov (2016) Phys. Tech. Probl. Min. In Situ Methods for Investigating the Strength Properties of Rocks and Rock Contacts 6, 26
Akhmatnurov, D., Zamaliyev, N., Mussin, R., Demin, V., Ganyukov, N., ZagĂłrski, K., Skrzypkowski, K., Korzeniowski, W., and Stasica, J. (2025). Optimization of Reinforcement Schemes for Stabilizing the Working Floor in Coal Mines Based on an Assessment of Its Deformation State. Materials, 18.
Popov, I.I., and Okatov, R.P. (1980). Landslide Control in Open-Pit Mines, Nedra. (In Russian).
Le Roux, R., Sepehri, M., Khaksar, S., and Murray, I. (2025). Slope Stability Monitoring Methods and Technologies for Open-Pit Mining: A Systematic Review. Mining, 5.
Serdaliev (2024) Min. J. Kazakhstan Optimization of Ore Fragmentation in Open-Pit Gold Mining 12, 4
Not Yet Imported: Jornal of Kryvyi Rih National University - journal-article : 10.31721/2306-5451-2018-1-47-38-44

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Timur, F.F. (2018). The problem of assessing the slope stability factor of open pit slopes. Probl. Nedropol’zovaniya, 3.
Kulikov (2023) Fiz.-Tekhn. Probl. Razrab. Polezn. Iskop. Phenomenological model for evaluation of slope stability for overburden rock dumps 5, 78
Nemova (2019) Izv. Tomsk. Politekh. Univ. Inzh. Georesur. Geomechanical assessment of slope stability parameters during mining of the Oleniy Ruchey deposit 330, 109
Babello (2025) Fiz.-Tekhn. Probl. Razrab. Polezn. Iskop. Geomechanical assessment of slope stability in open pits of the Zabaykalsky region 1, 57
Rakhimberdina (2020) Bull. D Serikbayev EKTU Study of sedimentation and displacement of the tailings and pit at the Sekisovskoye deposit as a basis for subsequent deformation forecasting 1, 62
Yakovlev (2023) Fiz.-Tekhn. Probl. Razrab. Polezn. Iskop. Methodological basis for ensuring the stability of slopes and pit edges 6, 3
Zairov, S., Nomdorov, R.U., and Ashuraliev, U.T. (2022). Increasing the stability of pit walls by forming a concave high bench slope profile. Gornyi Vestn. Uzb., 4–7.
Popov, V.N., Shpakov, P.S., and Yunakov, Y.L. (2008). Upravlenie Ustoychivost’yu Kar’ernykh Otkosov, MGGU. (In Russian).
Not Yet Imported: - journal-article : 10.3390/drones7040250

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Sadchikov (2025) Min. Informational Anal. Bull. Application of Mine Geophysics Methods for Solving Mining and Geological Problems 6, 109
Not Yet Imported: - proceedings-article : 10.36487/ACG_repo/2335_38

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Peng, T., Sun, Y., and Fang, J. (2024, January 13). Suichang Gold Mine: Numerical Simulation Method. Proceedings of the 5th International Conference on Civil, Architecture and Disaster Prevention and Control (CADPC 2024), Lishui, China.
Chen (2022) Int. J. Rock Mech. Min. Sci. Evaluation of slope stability within the influence of mining based on numerical simulation 41, 636
Not Yet Imported: - journal-article : 10.26418/jts.v24i1.76179

If you would like this item imported into the Digital Library, please contact us quoting Journal ID


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