2026· E3S Web of Conferences· Vol 730, pp. 02006· 0 citations· 18 references
Abstract
The resilient modulus is a key parameter in road and railway subgrade design, reflecting soil stiffness under repeated loading. While subgrades are typically compacted to maximum dry density, many existing infrastructures are supported by soils with densities lower than the maximum due to inadequate compaction or long-term density loss. Understanding the behaviour of these undercompacted and often unsaturated soils is therefore essential for both infrastructure assessment and design. This paper reviews the influence of cyclic stress, suction, density, and drying–wetting cycles on the resilient modulus of four unsaturated soils with high fines content using experimental data from the literature. The analysis indicates that resilient modulus increases with suction but decreases with increasing cyclic stress for these soils. Resilient modulus is also found to decrease significantly with reductions in density at all suction levels. Moreover, drying–wetting cycles were observed to cause soil deterioration, leading to stiffness degradation and a reduction in resilient modulus of the soil examined. A review of several predictive models showed that neglecting the influence of density and drying-wetting cycles results in weaker agreement between model predictions and experimental observations. To address these limitations, a new model is proposed that incorporates the effects of density variations and soil deterioration due to drying–wetting cycles, leading to improved predictions of the resilient modulus for undercompacted soils.
This research aims to investigate the active behavior of expansive soils stabilized with ground granular kiln slag (GGBS) and cement-activated slag (GGBS/C) subjected to cyclic loading. Key active parameters shear modulus, Young's modulus, damping ratio, and deviatoric stress are basically assessed, complemented by Fo...
Sarah Djouimaa, Abdelrahim Ghris, C. Guergah et al.· Kufa journal of Engineering· 0 citations
Unsaturated soil mechanics is a crucial area of geotechnical engineering that has gained increasing importance in recent years. However, despite its relevance, no standard guidelines have yet been implemented to study unsaturated behaviour in laboratories. This gap limits professionals’ ability to address practical cha...
Waldir Julca Lozano, J. Wilches, Heraldo Luiz Giacheti· Revista de la Construcción· 0 citations
The object of this study is the behavior of flexible pavement built on soft clay subgrade from Karawang, Indonesia. The problem to be solved is the identify the response the subgrade to repeated loads with different moisture content and speeds, representative of dynamic loads from vehicle movement.
Soft clay is one of...
Yonas Prima Arga Rumbyarso, P. Pratikso, R. B. Arief et al.· Eastern-European Journal of...· 0 citations
Soft soils can be improved with granular columns to increase load-bearing capacity and reduce embankment settlements. However, conventional columns often undergo excessive lateral deformation near the top due to the low confinement provided by very soft soils. Geosynthetic encasement overcomes this limitation by offeri...
Jaime Alberto Suárez Moreno, Gregório Luís Silva Araújo, E. Palmeira· E3S Web of Conferences· 0 citations
This paper presents an enhanced hydro‐mechanically coupled hypoplastic constitutive model for unsaturated soils, developed by extending an existing framework, with particular emphasis on improving the stiffness formulation to better capture the influence of the degree of saturation. The existing framework links Bisho...
Shanujah Mathuranayagam, W. Fuentes, S. Liyanapathirana et al.· International journal for nu...· 0 citations