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Received 17.01.2026

Revised 02.02.2026

Accepted 26.03.2026

Published 07.04.2026

Retrieved from Iss. 119, 2026

Pages 298 -313

  • 80 Views

Suggested citation

Petrovych, V., Petrovych, I., Savenko, S., Chechuha, Ye., & Yurchuk, V. (2026). METHODOLOGY FOR ASSESSING THE STABILITY OF EMBANKS TAKING INTO ACCOUNT THEIR STRESSED STATE. Automobile Roads and Road Construction, 119(1), 298-313. https://doi.org/10.33744/0365-8171-2026-119-298-313

METHODOLOGY FOR ASSESSING THE STABILITY OF EMBANKS TAKING INTO ACCOUNT THEIR STRESSED STATE

Volodymyr Petrovych Ihor Petrovych Serhiy Savenko Yevhen Chechuha Vitaly Yurchuk

Abstract

This article examines the assessment of the stability of road embankments, taking into account their stress-strain state. Based on Mohr–Coulomb strength theory and the results of numerical modelling, a criterion for the relative strength of subgrade soils is proposed. An analysis of the stress state of a reference embankment has been carried out, and the distribution of critical zones within its cross-section has been determined. The possibility of using the proposed indicator for the comparative assessment of the stability of embankments with different geometries and for identifying potential slip surfaces has been demonstrated

Keywords:

road embankment, slope stability, stress-strain state, Mohr–Coulomb theory, soil strength, relative strength index, slip surfaces, finite element method

References

1. Balashov, A., Ponomarova, O., Balashova, Y., & Tregub, O. (2026). Adaptive traffic signal optimization with thermal sensors and reinforcement learning. Results in Engineering, 29, 108601. https://doi.org/10.1016/j.rineng.2025.108601.
2. Małe, J. (1978). Ogólna metoda sprawdzania stateczności zboczy wzdłuż dowolnych powierzchni poślizgu. Cz. II. Ocena poprawności metody równowagi granicznej [General method for checking the stability of slopes along arbitrary slip surfaces. Part II. Evaluation of the correctness of the limit equilibrium method]. Arch. Hydrotechn., 25(4), 491–510. [in Polish].
3. Kryzhanivskyi, A. L., & Kulykov, O. V. (1977). Do rozrakhunku stiikosti vidkosiv [On the calculation of slope stability]. Hidrotekhnichne budivnytstvo [Hydrotechnical Construction], (5), 38–44. [in Ukrainian].
4. Naibor, D. J. Finite elements and slope stability. Numerical methods in geomechanics. Department of Civil Engineering, University College of Swansea, pp. 229–244.
5. Zavorytskyi, V. Y. (1984). Doslidzhennia rozpodilu napruzhen u priukosnii zoni zemlianogo polotna [Investigation of stress distribution in the near-slope zone of the roadbed]. Avtomobilni dorohy i dorozhnie budivnytstvo [Automobile Roads and Road Construction], (35), 6–12. [in Ukrainian].
6. Zavorytskyi, V. Y. (1985). Vplyv gheometrii i vlastyvostei gruntu na napruzheno-deformovanyi stan systemy “nasyp – osnova” [Influence of geometry and soil properties on the stress-strain state of the "embankment-foundation" system]. Avtomobilni dorohy i dorozhnie budivnytstvo [Automobile Roads and Road Construction], (36), 8–17. [in Ukrainian].

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https://doi.org/10.33744/0365-8171-2026-119-298-313

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