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Numerical analysis of consolidation of embankment
subsoil reinforced with dynamic replacement stone columns

Publication date: 13.04.2016

Technical Transactions, 2015, Enviromental Engineering Issue 2-Ś (24) 2015, pp. 79 - 100

https://doi.org/10.4467/2353737XCT.15.229.4615

Authors

,
Piotr Kanty
Department of Geotechnics and Roads, Faculty of Civil Engineering, Silesian University of Technology
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,
Krzysztof Sternik
Department of Geotechnics and Roads, Faculty of Civil Engineering, Silesian University of Technology
All publications →
Sławomir Kwiecień
Department of Geotechnics and Roads, Faculty of Civil Engineering, Silesian University of Technology
All publications →

Titles

Numerical analysis of consolidation of embankment
subsoil reinforced with dynamic replacement stone columns

Abstract

The paper presents a comparative analysis of the consolidation of soil under a road embankment reinforced with stone columns. The results were obtained from the most common analytical and numerical methods applied in driven column dimensioning. The analytical approach exploits Terzaghi’s one-dimensional theory and Barronʼs three-dimensional theory. The numerical calculations reflected the particular stages of the embankment construction in various two- and three-dimensional systems. The geotechnical parameters that were crucial for the research were determined on the basis of geoengineering documentation, laboratory and field studies. The paper begins with a short introduction presenting the dynamic replacement method.

References


Information

Information: Technical Transactions, 2015, Enviromental Engineering Issue 2-Ś (24) 2015, pp. 79 - 100

Article type: Original article

Titles:

Polish:

Numerical analysis of consolidation of embankment
subsoil reinforced with dynamic replacement stone columns

English:

Numerical analysis of consolidation of embankment
subsoil reinforced with dynamic replacement stone columns

Authors

Department of Geotechnics and Roads, Faculty of Civil Engineering, Silesian University of Technology

Department of Geotechnics and Roads, Faculty of Civil Engineering, Silesian University of Technology

Department of Geotechnics and Roads, Faculty of Civil Engineering, Silesian University of Technology

Published at: 13.04.2016

Article status: Open

Licence: None

Percentage share of authors:

Piotr Kanty (Author) - 33%
Krzysztof Sternik (Author) - 33%
Sławomir Kwiecień (Author) - 34%

Article corrections:

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Publication languages:

English