2026· E3S Web of Conferences· Vol 740, pp. 05001· 0 citations· 17 references
Abstract
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 offering lateral confinement. In this context, geotextile-encased columns (GECs) are used beneath embankments on very soft saturated fine soils (Su < 15 kPa). This study evaluates the behavior of GECs in large-scale physical model tests. The experimental program simulated column installation and staged embankment construction. Tests were instrumented to monitor internal soil stresses, settlements, and pore pressures. Four load tests were performed, varying the radial stiffness of the encasement. Performance was assessed in terms of settlements, pore pressure response, and stress redistribution between soil and columns. Results indicate that GECs can sustain stresses 6–10 times higher than the surrounding soil. With increasing encasement stiffness led to pronounced stress concentration in the columns, which carried vertical stresses up to about four times the applied surcharge.
Significant progress has been made in understanding load transfer mechanisms in piled embankments reinforced with geogrids. However, knowledge remains limited regarding foundations incorporating semi-rigid supports, such as encased granular column. This study compares the performance of granular base layers in embankme...
Andréa M. P. V. Lima, D. W. M. Santos, F. Portelinha· E3S Web of Conferences· 0 citations
Encapsulating stone columns with geosynthetic encasement is an effective technique to enhance bearing capacity and reduce deformation in soft soils. However, this approach typically requires large quantities of virgin aggregates from local quarries, which may cause significant environmental impacts on fragile ecosystem...
M. Gu, Ze-Kai Chen, Ling Zhang et al.· Environmental Geotechnics· 0 citations
A series of cyclic and postcyclic triaxial tests was conducted on geotextile-encased soil specimens to investigate the influence of fabric encasement on soil behavior under principal axis loading. Results indicate that the encasement of geotextile fabric is mobilized more efficiently in denser soil matrices. Theore...
Hyeong-Joo Kim, V. A. Corsino, Tae-Eon Kim et al.· Journal of Geotechnical and...· 0 citations
In geotechnical structures composed of soil and geosynthetic layers, the shear strength mobilized at material interfaces is a complex parameter influenced by the properties of both the soil and the geosynthetics in contact. Therefore, evaluation through experimental testing is essential. However, most available studies...
A. L. C. S. Bernardinelli, André Coutinho Lima, D. Meucci· E3S Web of Conferences· 0 citations