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Estimation of soil water retention curve based on pore freezing kinetics

Cita com:
hdl:2117/427904
Document typeArticle
Defense date2025-04
PublisherInstitute of Physics (IOP)
Rights accessOpen Access
This work is protected by the corresponding intellectual and industrial property rights.
Except where otherwise noted, its contents are licensed under a Creative Commons license
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Attribution 4.0 International
Abstract
The effect of pore radius can be observed during different processes that happen in geological media, taking a fundamental role during inter-pore ice formation and soil freezing. This can be expressed by the freezing characteristic function that relates chemical potential equilibrium and soil pore size distribution through the use of the water retention curve and the equilibrium temperature. By the analysis of temperature time evolution obtained for an undrained laboratory freezing test, and a Finite Element thermo – hydraulic model calibration, the estimation of the soil water retention curve was performed. A comparison between laboratory and the best fitted results were made and an acceptable agreement was observed between the estimated SWRC and the measured one, supporting the hypothesis of SWRC prediction through a relatively simple and rapid test. Furthermore, this relation allows to propose a novel test to estimate the soil water retention curve based on energy balance equations and freezing kinetics.
CitationMacias, A.; Vaunat, J.; Gonzalez, L. Estimation of soil water retention curve based on pore freezing kinetics. "IOP conference series: earth and environment", Abril 2025, vol. 1480, núm. article 012128.
ISSN1755-1307
Publisher versionhttps://iopscience.iop.org/article/10.1088/1755-1315/1480/1/012128
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