Abstract
AbstractThe paper presents a new single-surface elasto-plastic model for unsaturated cemented soils, formulated within the critical state soil mechanics framework, which should be considered as an extension to unsaturated conditions of a recently proposed constitutive law for saturated structured soils. The model has been developed with the main purpose of inspecting the mechanical instabilities induced in natural soils by bond degradation resulting from the accumulation of plastic strains and/or the changes in pore saturation. At this scope, the constitutive equations are used to simulate typical geotechnical testing conditions, whose results are then analysed in light of the controllability theory. The results of triaxial tests on an ideal fully saturated cemented soil and on the corresponding unsaturated uncemented one are first discussed, aiming at detecting the evidence of potentially unstable conditions throughout the numerical simulations. This is followed by similar analyses considering the combined effects of both the above features. For each analysed case, a simple analytical stability criterion is proposed and validated against the numerical results, generalizing the results, and highlighting the crucial role of state variables and model parameters on the possible occurrence of failure conditions.
Funder
Università degli Studi di Roma La Sapienza
Publisher
Springer Science and Business Media LLC
Subject
Earth and Planetary Sciences (miscellaneous),Geotechnical Engineering and Engineering Geology
Reference73 articles.
1. Alonso E, Gens A, Josa A (1990) Constitutive model for partially saturated soils. Géotechnique 40(3):405–430
2. Amorosi A, Rampello S (1998) The influence of natural soil structure on the mechanical behaviour of a stiff clay. In: Proceedings of 2nd international symposium on geotechnics of hard soils-soft rocks, Naples, Balkema, Rotterdam, vol 1, pp 395–402
3. Amorosi A, Rampello S (2007) An experimental investigation into the mechanical behaviour of a structured stiff clay. Géotechnique 57(2):153–166
4. Antinoro C, Arnone E, Noto LV (2017) The use of soil water retention curve models in analysing slope stability in differently structured soils. CATENA 150:133–145
5. Baudet B, Stallebrass S (2004) A constitutive model for structured clays. Géotechnique 54(4):269–278
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