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Gutierrez-Ch, J GAuthorGraterol, E PAuthor

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October 29, 2024
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Proceedings Paper
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Rock slope stability analysis for planar failures with Ucar nonlinear criterion

Publicated to: 315-320 - 2024-01-01 (), DOI: 10.1201/9781003429234-42

Authors:

Ucar, R; Belandria, N; Gutiérrez-Ch, JG; Graterol, EP; Toro, R; Arlegui, L
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Affiliations

Univ Los Andes, Escuela Ingn Geol, Merida, Venezuela - Author
Univ Politecn Madrid, ETSI Caminos Canales & Puertos, Madrid, Spain - Author
Univ Zaragoza, Dept Ciencias Tierra, Zaragoza, Spain - Author
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Abstract

The stability analysis of rock slopes holds paramount importance in a multitude of geotechnical projects, including rock-fill dams, embankments, as well as natural and excavated slopes. Among the various failure modes encountered in rock slopes, planar failure is a significant concern. Numerical analysis employing the Mohr-Coulomb linear criterion is a conventional approach adopted by engineers to evaluate the likelihood of planar failure within rock slopes. Nevertheless, the shear strength behavior of rock masses is universally recognized to exhibit nonlinear characteristics, rendering the Mohr-Coulomb criterion a simplified representation of a more complex reality. To bridge this gap, a range of nonlinear shear strength criteria has been formulated, aiming to more accurately depict the nonlinear behavior of rock masses. The objective of this paper is to provide novel insights into the stability analysis of rock slopes through the application of the Ucar nonlinear criterion. The outcomes demonstrate that the Ucar criterion, when juxtaposed with other nonlinear criteria reported in scholarly literature, provides a more precise estimation of the potential failure wedge.
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Keywords

Excavated slopeFailure (mechanical)GeotechnicalMohr-coulombNonlinear analysisNonlinear criterionRock mechanicsRock slopeRock slope stabilityRock-fill damRock-massRocksSlope stabilitySlope stability analysis

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Leadership analysis of institutional authors

This work has been carried out with international collaboration, specifically with researchers from: Venezuela.

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Awards linked to the item

E.P. Graterol is receiving since 2022 the scholarship for PhD research provided by the Jose Entrecanales Ibarra Foundation. The financial support of this institution is greatly acknowledged.
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