Cracking behaviour of fine-grained soils: From laboratory testing to numerical modelling

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Abstract

Many experimental evidences suggest that desiccation cracks in clay initiate as a result of the mobilization of soil tensile strength. However this mechanical approach disregards the cohesionless and effective stress-dependent behaviour of fine-grained soil. On the other hand recent findings in the literature suggest that effective stress-dependent shear failure criteria would be appropriate to explain the mechanisms of desiccation cracking for tensile total stress states. This work aims at assessing the validity of a shear failure criterion to predict the onset of cracking in clay forms exposed to air drying. Clay forms of various geometries were experimentally subjected to non-uniform hydraulic and mechanical boundary conditions. Time and location for crack initiation are monitored using a digital camera. Cracking experiments are then modelled in a hydro-mechanical framework using an effective-stress shear failure criterion. The comparison of simulations with experimental results for both the time and the location of cracking allows assuming that cracking occurs due to failure in shearing.

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Gerard, P., Murray, I., & Tarantino, A. (2019). Cracking behaviour of fine-grained soils: From laboratory testing to numerical modelling. In E3S Web of Conferences (Vol. 92). EDP Sciences. https://doi.org/10.1051/e3sconf/20199216004

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