Collapsible soil exhibits major settlements under wetting scenarios, causing meaningful economical losses associated to damages of structures. Increasing the water content produce a permanent change in the soil microstructure and instantly reduction of pore volumes. In this work, the settlements induced by wetting in a full-scale foundation prototype over collapsible loess is analyzed. A hydro-mechanical (H-M) model was adopted to consider the soil response and the behaviour of shallow foundations caused by a water pipe leakage. The model was calibrated from experimental data and in-situ measurements, and the settlements were studied by considering inverse, sensitivity and statistical analyses. Final settlements after 2 years of infiltration were computed performing Monte Carlo simulation, showing the accuracy of the H-M model adopted to predict the collapse phenomena in shallow foundations.

Inverse and probabilistic analysis of induced settlements by wetting in collapsible soils

Giomi, Ignacio
Investigation
;
2025-01-01

Abstract

Collapsible soil exhibits major settlements under wetting scenarios, causing meaningful economical losses associated to damages of structures. Increasing the water content produce a permanent change in the soil microstructure and instantly reduction of pore volumes. In this work, the settlements induced by wetting in a full-scale foundation prototype over collapsible loess is analyzed. A hydro-mechanical (H-M) model was adopted to consider the soil response and the behaviour of shallow foundations caused by a water pipe leakage. The model was calibrated from experimental data and in-situ measurements, and the settlements were studied by considering inverse, sensitivity and statistical analyses. Final settlements after 2 years of infiltration were computed performing Monte Carlo simulation, showing the accuracy of the H-M model adopted to predict the collapse phenomena in shallow foundations.
2025
Inglese
Giomi, Ignacio ; Rocca, Ricardo J. ; Francisca, Franco M.
Cardoso, R.
E3S Web of Conferences
642
5th European Conference on Unsaturated Soils and Biotechnology Applied to Geotechnical Engineering, EUNSAT 2025 + BGE
EDP Sciences
2025
Instituto Superior Tecnico, prt
none
Giomi, Ignacio; Rocca, Ricardo J.; Francisca, Franco M.
273
info:eu-repo/semantics/conferenceObject
3
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11389/91658
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