Soil Water Characteristic Curve of an Unsaturated Soil under Low Matric Suction Ranges and Different Stress Conditions
- 1 Graduate School of Engineering, Ashikaga University, Omae Ashikaga Tochigi, Japan
- 2 Department of Civil Engineering, Ashikaga University, Omae Ashikaga Tochigi, Japan
Abstract
Accurate evaluation of unsaturated soil properties is critical for the design of geotechnical and geo-environmental structures such as road pavements, foundations, and earth dams. Water retention activity in soils which is used to predict the stability or seepage problems in the ground is one of the key features in unsaturated soil mechanics. Thus, many experimental works have reported on the unsaturated soil properties, and the soil-water characteristic curve (SWCC) test has contributed significantly to the interpretation of matric suction. Since traditional instruments cannot apply stress in SWCC tests, some researchers have developed suction controlled triaxial apparatus, by which SWCC tests are performed under different stress states. Determination of SWCCs under stress conditions similar to those in the field is key for interpretation of the hydro-mechanical behavior of unsaturated soils. This study conducted SWCC tests of unsaturated silt soil in low matric suction ranges under both drying and wetting conditions. The SWCCs were measured under one-dimensional and isotropic confining stresses ranging from 50 to 450 kPa. The micro porous membrane method was used instead of high air entry ceramic disk for controlling relatively low matric suction. The range of matric suction controlled was from 0 to 20 kPa. The study revealed that the measured SWCC in low matric suction ranges seems to be affected by the influence of stress conditions. Isotropic confining stress caused the void structure of the specimen to become dense and consequently, soil moisture flow movement also decreased. The water retention activity was obviously high, and the point regard to air entry value was larger. The study further suggests that the current methods adopted for estimating unsaturated soil properties require further development to take into account the effect of different stress conditions.
- Fredlund, D.G. and Xing, A.Q. (1994) Equations for the Soil Water Characteristic Curve. Canadian Geotechnical Journal, 31, 521-532. https://doi.org/10.1139/t94-061
- Ng, C.W.W. and Pang, Y.W. (2000) Influence of Stress State on Soil-Water Characteristics and Slope Stability. Journal of Geotechnical and Geoenvironmental Engineering, 126, 157-166. https://doi.org/10.1061/(ASCE)1090-0241(2000)126:2(157)
- Tavakoli, D.M.H., Habibagahi, G. and Nikooee, E. (2014) Effect of Confining Stress on Soil-Water Retention Curve and Its Impact on the Shear Strength of Unsaturated Soils. Vadose Zone Journal, 13, 1-11.
- Li, B. and Chen, Y. (2016) Influence of Dry Density on Soil-Water Retention Curve of Unsaturated Soils and Its Mechanism Based on Mercury Intrusion Porosimetry. Transactions of Tianjin University, 22, 268-272. https://doi.org/10.1007/s12209-016-2744-5
- Nishimura, T., Hirabayashi, Y., Fredlund, D.G. and Gan, J.K.M. (1999) Influence of Stress History on the Strength Parameters of an Unsaturated Statically Compacted Soil. Canadian Geotechnical Journal, 36, 251-261. https://doi.org/10.1139/t98-098
- Zhou, J. and Yu, J. (2005) Influences Affecting the Soil-Water Characteristic Curve. Journal of Zhejiang University Science, 797-804. https://doi.org/10.1631/jzus.2005.A0797
- Vanapalli, S.K., Sillers, W.S. and Fredlund, M.D. (1999) The Meaning and Relevance of Residual Water Content to Unsaturated Soils. 51st Canadian Geotechnical Conference, Edmonton, 4-7 October 1998, 101-108.
- Delage, P. and Lefebvre, G. (1984) Study of the Structure of a Sensitive Champlain Clay and of Its Evolution during Consolidation. Canadian Geotechnical Journal, 21, 21-23. https://doi.org/10.1139/t84-003
- Nishimura, T., Koseki, J., Fredlund, D.G. and Rahardjo, H. (2012) Microporous Membrane Technology for Measurement of the Soil-Water Characteristic Curve. Canadian Geotechnical Journal, 35, 201-208. https://doi.org/10.1520/GTJ103670
- Habasimbi, P. and Nishimura, T. (2018) Comparison of Soil-Water Characteristic Curves in One-Dimensional and Isotropic Stress Conditions. MDPI Soil System Journal, 2, 43. https://doi.org/10.3390/soilsystems2030043
- Ishikawa, T., Tokoro, T., Ito, K. and Miura, S. (2010) Testing Methods for Hydro-Mechanical Characteristics of Unsaturated Soils Subjected to One-Dimensional Freeze-Thaw Action. Soils and Foundations, 50, 431-440. https://doi.org/10.3208/sandf.50.431