Open Access
Issue
E3S Web of Conf.
Volume 382, 2023
8th International Conference on Unsaturated Soils (UNSAT 2023)
Article Number 24005
Number of page(s) 6
Section Long-Term Measurements of Suction in the Field and their Relation to Climatic Parameters - Part II
DOI https://doi.org/10.1051/e3sconf/202338224005
Published online 24 April 2023
  1. G. Barnes. Soil mechanics. Bloomsbury Publishing (2017) [Google Scholar]
  2. A.W. Skempton, R.L. Schuster, D.J. Petley. Joints and fissures in the London Clay at Wraysbury and Edgware. Géotechnique, 19, 2, 205–217 (1969) [CrossRef] [Google Scholar]
  3. C. Vitone, F. Cotecchia, J. Desrues, G. Viggiani. (2009). An approach to the interpretation of the mechanical behaviour of intensely fissured clays. Soils & Found., 49, 3, 355–368 (2009) [Google Scholar]
  4. T.D. Stark, H.T. Eid. Slope stability analyses in stiff fissured clays. J .of Geot. Eng., 123, 4, 335–343 (1997) [Google Scholar]
  5. G. Mesri, M. Shahien. Residual shear strength mobilized in first-time slope failures. J. Geot. & Geoenv. Eng., 129, 1, 12–31 (2003) [CrossRef] [Google Scholar]
  6. J. Knappett & R.F. Craig (2019). Craig’s soil mechanics. CRC press (2019) [Google Scholar]
  7. P.R.N. Hobbs, G. Loucaides, G. Petrides. Geotechnical properties and behaviour of Pliocene marl in Nicosia, Cyprus, British Geological Survey, Report. EGARP-KW/86/1 (1986) [Google Scholar]
  8. D. van der Merwe. Contribution to specialty session B, current theory and practice for building on expansive clays. In Proc. of the 6th Regional Conf. for Africa on Soil Mech. and Found. Eng., Durban, p. 166–167 (1975) [Google Scholar]
  9. G. Lazarou, D. Loukidis, M. Bardanis. Moisture migration under mat foundations in Nicosia Marl. Geot. and Geol. Eng., 37, 3, 1585–1608 (2019) [CrossRef] [Google Scholar]
  10. M. Bardanis, D. Loukidis. Long-term suction measurements in Greece & Cyprus. A continuous update. In E3S Web of Conferences, vol. 195, p. 01023 (2020). [Google Scholar]
  11. L. Walthert, P. Schleppi. Equations to compensate for the temperature effect on readings from dielectric Decagon MPS‐2 and MPS‐6 water potential sensors in soils. J. of Plant Nutrition and Soil Sci., 181, 5, 749–759 (2018). [CrossRef] [Google Scholar]
  12. M.T. van Genuchten. A closed-form equation for predicting the hydraulic conductivity of unsaturated soils. Soil Sci. Soc. of Am. J., 44, 5, 892–898 (1980) [CrossRef] [Google Scholar]
  13. M.D. Ankeny, M. Ahmed, T.C. Kaspar, R. Horton. Simple field method for determining unsaturated hydraulic conductivity. Soil Sci. Soc. of Am. J., 55, 2, 467–470 (1991) [CrossRef] [Google Scholar]
  14. I. Tsaparas, D.G. Toll. Numerical analysis of infiltration into unsaturated residual soil slopes. In Proc. of the 3rd Int. Conf. on Unsat. Soils, vol 2., 755–762 (2002) [Google Scholar]

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