Lime treatment is a common technique of improving the workability and geotechnical properties of soils. In this study, the aggregate size effects on the water retention capacity and microstructure of lime-treated soil were investigated. Two soil powders with different maximum aggregate sizes (Dmax = 0·4 and 5 mm) were prepared and stabilised by 2% lime (by weight of dry soil). Soil samples were prepared by compaction at dry side of optimum water content (w = 17%) with a dry density of 1·65 Mg/m3. Suction and pore size distribution were determined after different curing periods. The results obtained show that: (a) the treated soil with smaller Dmax presents relatively smaller modal sizes and lower frequency of macropores (10–330 μm); (b) lime addition effectively improves the soil water retention capacity and decreases both the modal sizes of macro- and micropores gradually over time. Moreover, a higher air entry value and larger water retention capacity were also observed for a smaller Dmax value, in agreement with the pore size distributions.
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December 2015
Research Article|
November 25 2015
Effects of aggregate size on water retention capacity and microstructure of lime-treated silty soil Available to Purchase
Y. Wang;
Y. Wang
*Ecole des Ponts ParisTech, U.R. Navier/CERMES, Marne-la-Vallée Cedex 2, France.
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Y. J. Cui;
Y. J. Cui
*Ecole des Ponts ParisTech, U.R. Navier/CERMES, Marne-la-Vallée Cedex 2, France.
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A. M. Tang;
A. M. Tang
*Ecole des Ponts ParisTech, U.R. Navier/CERMES, Marne-la-Vallée Cedex 2, France.
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C. S. Tang;
C. S. Tang
†School of Earth Sciences and Engineering, Nanjing University, Nanjing, China.
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N. Benahmed
N. Benahmed
‡IRSTEA, Groupe de Recherche ‘Ouvrages hydrauliques’, Aix En Provence Cedex 5, France.
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Publisher: Emerald Publishing
Received:
August 20 2015
Accepted:
October 28 2015
ICE Publishing: all rights reserved
2016
Geotechnique Letters (2015) 5 (4): 269–274.
Article history
Received:
August 20 2015
Accepted:
October 28 2015
Citation
Wang Y, Cui YJ, Tang AM, Tang CS, Benahmed N (2015), "Effects of aggregate size on water retention capacity and microstructure of lime-treated silty soil". Geotechnique Letters, Vol. 5 No. 4 pp. 269–274, doi: https://doi.org/10.1680/jgele.15.00127
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