SLOPE STABILITY ASSESSMENT USING UAV-DERIVED DATA AND NUMERICAL MODELING WITH CONSIDERATION OF SOIL GEOMECHANICAL PROPERTIES

Authors

  • Djakupbekov Belek Torokulovich Institute of Machine Science, Automation and Geomechanics of the National Academy of Sciences of the Kyrgyz Republic, Bishkek, Kyrgyzstan Author
  • Asilova Zulfiya Atamyrzaevna Jalal-Abad International University, Manas, Kyrgyzstan Author
  • Kazatov Urmat Talantbekovich Kyrgyz State Technical University named after I. Razzakov, Bishkek, Kyrgyzstan Author
  • Baitov Janat Kurmashuly ТОО Elaman Invest, Astana, Kazakhstan Author

DOI:

https://doi.org/10.63666/ejsmr.1694-9013.4.I.2026.110

Keywords:

geomechanics, slope stability, UAV, digital terrain model, SLOPE/W, Morgenstern–Price method, seismic loading

Abstract

This article presents a comprehensive approach to assessing the stability of excavation pit slopes in seismically active regions, based on the integration of remote sensing data using unmanned aerial vehicles (UAVs) and numerical modeling using the limit equilibrium method.

The study focused on a pit up to 60 m deep, located in a zone of increased seismic activity in the Kyrgyz Republic. A high-precision digital elevation model was generated using aerial photography with a Phantom 4 RTK UAV, which was used to develop a geomechanical calculation model.

The stability calculation was performed using the Morgenstern-Price method, taking into account the physical and mechanical properties of the soils and pseudo-static seismic impact. The slope stability coefficient was assessed, potential slip surfaces were identified, and the most dangerous deformation zones were determined.

It was shown that taking seismic impact into account significantly reduces the stability coefficient and requires adjustments to the slope design parameters. The proposed approach improves the reliability of slope geomechanical assessments and can be used in engineering and geological surveys and design in complex geodynamic conditions.

Author Biographies

  • Djakupbekov Belek Torokulovich, Institute of Machine Science, Automation and Geomechanics of the National Academy of Sciences of the Kyrgyz Republic, Bishkek, Kyrgyzstan

    Associate Professor 

  • Asilova Zulfiya Atamyrzaevna, Jalal-Abad International University, Manas, Kyrgyzstan

    Associate Professor

  • Kazatov Urmat Talantbekovich, Kyrgyz State Technical University named after I. Razzakov, Bishkek, Kyrgyzstan

    Associate Professor

  • Baitov Janat Kurmashuly, ТОО Elaman Invest, Astana, Kazakhstan

    Associate Professor

References

1. LLC “Project Style”. Engineering and Geological Report for Site Design Documentation. Bishkek, 2025.

2. Onika, S.G., Khalyavkin, F.G., Gantsovsky, E.I. Slope Stability of Open Pit Walls: Methodological Guide Using GeoStudio Software. Minsk: BNTU, 2016.

3. Khromykh, V.V., Khromykh, O.V. Digital Terrain Models: учебное пособие. Tomsk: TML-Press, 2007.

4. SN KR 20-02:2024. Seismic-Resistant Construction Design Standards. Kyrgyz Republic, 2024.

5. Agisoft LLC. Agisoft Metashape User Manual: Professional Edition, Version 1.4, 2018. Available at: https://www.agisoft.com

6. Medvedev, S.V. Engineering Seismology. Moscow: Gosstroyizdat, 1962.

7. Stability Modeling with GeoStudio: An Engineering Methodology. 3rd ed. Canada, 2023.

8. Morgenstern, N.R., Price, V.E. (1965). The analysis of the stability of general slip surfaces. Géotechnique, 15(1), 79–93. https://doi.org/10.1680/geot.1965.15.1.79

9. Demin, A.M., Shushkina, O.I. Stress State and Stability of Dump Slopes in Open Pits. Moscow: Nedra, 1978.

10. Djakupbekov, B.T., Asilova, Z.A., Nikolskaya, O.V. (2023). Numerical modeling of dump slope stability in mountainous mining conditions. Geodynamics and Stress State of the Earth’s Interior, 10(1), 30–36. https://doi.org/10.15372/FPVGN2023100105

11. Kadyralieva, G., Djakupbekov, B.T. (2018). Assessment peculiarities of construction stability in mining-affected areas. In: Geotechnical Infrastructure for Megacities and New Capitals. Orlando, New York, pp. 114–116.

12. Zhu, Y., Xu, Y. (2020). Slope stability from a hydrological perspective: Taking a typical soil slope as an example. Advances in Civil Engineering, 2020, Article ID 1273603. https://doi.org/10.1155/2020/1273603

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Published

2026-04-30

How to Cite

SLOPE STABILITY ASSESSMENT USING UAV-DERIVED DATA AND NUMERICAL MODELING WITH CONSIDERATION OF SOIL GEOMECHANICAL PROPERTIES. (2026). Eurasian Journal of Scientific and Multidisciplinary Research, 4(I), 193-201. https://doi.org/10.63666/ejsmr.1694-9013.4.I.2026.110

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