ANALYSIS OF EMBANKMENT SLOPE STEEPNESS AND STABILITY

Author:

Tamošiūnas Tadas1ORCID

Affiliation:

1. Vilniaus Gedimino technikos universitetas, Vilnius, Lietuva

Abstract

This paper describes the stability calculations of the most common road embankments slopes and their results using the modified Bishop method. By searching for the smallest possible effective angle of internal friction of the different slope steepness embankments, the possible different bases of the embankment, the weight of the embankment soil, the load caused by transport and the location of load application (shoulder) were evaluated. Analyzing the obtained calculation results, it was determined that at a slope of 1:2 (26.57°) steepness, to ensure slope stability, the calculated effective internal friction angle of the embankment soil should be φʹd ≥ 28.5°, and at a slope of 1:1.75 (29.74°) steepness – φʹd ≥ 29.8°. When the slope is 2:3 (33.69°) steepness, the stability of the slope cannot be guaranteed.

Publisher

Vilnius Gediminas Technical University

Subject

General Medicine

Reference17 articles.

1. Aryal, K. P. (2006). Slope stability evaluations by limit equilibrium and finite element methods [Doctoral dissertation]. Norwegian University of Science and Technology, Trondheim, Norway. http://hdl.handle.net/11250/231364

2. A comparative study of slope stability analysis using traditional limit equilibrium method and finite element method;Burman, A.;Asian Journal of Civil Engineering (BHRC),2015

3. Geotechnics of Roads: Fundamentals

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