One dimensional normal consolidation line equation

Author:

Al-Badran Yasir M.1,Baille Wiebke2,Schanz Tom3

Affiliation:

1. Department of Civil Engineering, Mustansiriyah University , Baghdad , Iraq

2. Department of Soil Mechanics Foundation Engineering and Environmental Geotechniques, Ruhr-Universität Bochum , Bochum , Germany

3. Ruhr-Universität Bochum , Bochum , Germany

Abstract

Abstract Many empirical equations have been proposed in the past to predict the parameters of the one-dimensional normal consolidation line (1D-NCL) for soils. However, applications of these equations are limited to specific range of pressure and plasticity soils. General empirical equations for 1D-NCL for large range of pressure and plasticity soils are presented in this study. It is assumed that the 1D-NCL has up to three slopes and these slopes start at different stresses depending on liquid limit (LL) of soils. The 1D-NCL of 59 different soils for a large range of LL (19–520%) was used to establish the initial part of 1D-NCL. The soils were categorized based on their LL into two groups: (i) LL < 110% and (ii) LL > 110%. The equations for initial part of 1D-NCL were compared with the previous empirical 1D-NCL equations. The comparisons showed that the new 1D-NCL equations have a better agreement with tests results, especially for highly plastic soils. Moreover, two soils with different plasticity were used to verify the new 1D-NCL equations. The verifications showed a good agreement between the experimental and the predicted results.

Publisher

Walter de Gruyter GmbH

Subject

Mechanics of Materials,Materials Science (miscellaneous)

Reference36 articles.

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2. Al-Badran Y. Volumetric yielding behavior of unsaturated fine-grained soils [dissertation]. Bochum: Ruhr Universität Bochum; 2011.

3. Ho DYF, Fredlund DG, Raharadjo H. Volume change indices during loading and unloading of an unsaturated soil. Can Geotec J. 1992;29:195–207.

4. Fredlund DG, Rahardjo H. Soil mechanics for unsaturated soils. New York: John Wiley & Sons; 1993.

5. Marcial D, Delage P, Cui YJ. On the high stress compression of bentonites. Can Geotech J. 2002;39:812–20.

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