Author:
R.S.V. Rashma,B.R. Jayalekshmi,R. Shivashankar
Abstract
Purpose
The study aims to analyse the stability of embankments over the improved ground with stone column (SC) and pervious concrete column (PCC) inclusions using limit equilibrium method. The short-term stability of PCC-supported embankment system is rarely addressed. Therefore, the factor of safety (FOS) of column-supported embankment system is calculated using individual column and equivalent area models.
Design/methodology/approach
The stability analysis of column-supported embankment system is conducted using PLAXIS LE 2D. The various geometrical and shear strength parameters influencing the FOS of these embankment systems such as diameter of columns, spacing between columns, embankment height, friction angle of column material, undrained cohesion of weak ground and cohesion of PCC are considered.
Findings
The critical failure envelope of PCC-supported embankment system is observed to be of toe failure, whereas the failure envelope of stone column-supported embankment system is generally of deep-seated nature.
Originality/value
It is found that for PCC embankment system, FOS and failure envelope are not influenced by the geometrical/shear strength parameters other than height of embankment. However, for stone column-supported embankment system, FOS and failure envelope are dependent on all the shear strength and geometrical parameters considered in this study.
Subject
Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering
Reference29 articles.
1. Two-dimensional deep-seated slope stability analysis of embankments over stone column-improved soft clay;Engineering Geology,2011
2. Performance of a geosynthetic-encased column (GEC) in soft ground: numerical and analytical studies;Geosynthetics International,2013
3. Barksdale, R.D. and Bachus, R.C. (1983), “Design and constrcution of stone columns volume 1, FHWA-RD-83-026 final report”, Federal Highway Administration, No. December.
4. Failure mechanism of geosynthetic-encased stone columns in soft soils under embankment;Geotextiles and Geomembranes,2015
5. Stabilization of embankment foundations by using stone columns;Geotechnical and Geological Engineering,1997