Have a personal or library account? Click to login
Volumetric behavior of natural swelling soil on drying-wetting paths. Application to the Boumagueur marl -Algeria- Cover

Volumetric behavior of natural swelling soil on drying-wetting paths. Application to the Boumagueur marl -Algeria-

Open Access
|Apr 2020

References

  1. Abou-Bekr, N. (1995). Modélisation du comportement mécanique et hydraulique des sols partiellement saturés. Ph.D. thesis. École Centrale de Paris. France. (In French).
  2. Al-Mahbashi, A.M., Elkady, T.Y. and Alrefeai, T.O. (2015). Soil water characteristic curve and improvement in lime treated expansive soil. Geomechanics and Engineering, 8(5), 687–706.
  3. Alonso, E.E., Romero, E., Hoffmann, C. and Garcia-Escudero, E. (2005). Expansive bentonite–sand mixtures in cyclic controlled-suction drying and wetting. Engineering Geology, 81(3), 213–226.
  4. Benchouk, A., Derfouf, F.M., Abou-bekr, N and Taibi, S. (2013). Behaviour of some clays on drying and wetting paths. Arabian Journal of Geosciences, 6(12), 4565–4573.
  5. Bendahgane, M., Nechnech, A., Taibi, S. and Abou-Bekr, N. (2016). Hydromechanical behaviour of an unsaturated Algiers clay. European Journal of Environmental and Civil Engineering, 21(9), 1093–1113.
  6. Biarez, J. and Favre, J.I. (1975). Parameter filing and statistical analysis of data in soil mechanic. Proceedings of the 2nd International Conference on Application of Statistics and Probabilities in Soils Mechanics, Aachen, Germany, September.
  7. Biarez, J., Fleureau, J.M., Zerhouni, M.I. and Soepandji, B.S. (1988). Variations de volume des sols argileux lors de cycles de drainage humidification. Revue. Française de Géotechnique, 41, 63–71. (in French).
  8. Delage, P., Howat, M.D. and Cui, Y.J. (1998). The relationship between suction and swelling properties in a heavily compacted unsaturated clay. Engineering Geology, l (50), 31–48.
  9. Derfouf, F.E.M., Allal, M.A., Abou-Bekr, N. and Taibi, S. (2013). Mesure et prédiction des chemins de drainage humidification. Application à l’argile d’un noyau de barrage. Revue. Française de Géotechnique, 142:49–60. (In French).
  10. Estabragh, A.R., Parsaei, B. and Javadi, A.A. (2015). Laboratory investigation of the effect of cyclic wetting and drying on the behaviour of an expansive soil. Soils and Foundations, 55(2), 304–314.
  11. Fleureau, J.M., Kheirbek-Saoud, S., Soemitro, R. and Taibi, S. (1993). Behavior of clayey soils on drying-wetting paths. Canadian Geotechnical Journal, 30(2), 287–296.
  12. Fleureau, J.M., Verbrugge, J.C., Huergo, R., Correia, A.G. and Kheirbek, S. (2002). Aspect of the behaviour of compacted clayey soils on drying-wetting Paths. Canadian Geotechnical Journal, 39(6), 1341–1357.
  13. Fredlund, D.G and Rahardjo, H. (1993). Soils mechanics for unsaturated soils. John Wiley publications. New York. USA.
  14. Fredlund, D.G., Xing, A., Fredlund, M.D. and Barbour, S.L. (1996). The relationship of the unsaturated shear strength function to the soil water characteristic. Canadian Geotechnical Journal, 33(3):440–448.
  15. He, Y., Cui, Y.J., Ye, W.M. and Conil, N. (2017). Effects of wetting-drying cycles on the air permeability of compacted Téguline clay. Engineering geology, 228, 173–179.
  16. Hillel, D. (1980). Fundamentals of Soil Physics. Academic Press, New York, U.S.A.
  17. Houmadi, Y., Mamoune, S.M.A. and Belakhdar, K. (2009). Swelling and Geotechnical Cartography of Saida Soils. Jordan Journal of Civil Engineering, 3(1), 32–40.
  18. Goual, I., Goual, M.S., Taibi, S. and Abou-bekr, N. (2011). Behaviour of unsaturated tuff- calcareous sand mixtureon drying-wetting and triaxial paths. Geomechanics and Engineering, 3(4), 267–284.
  19. Laloui, L., Salager, S and Rizzi, M. (2013). Retention behaviour of natural clayey materials at different temperatures. Acta Geotechnica, 8(5), 537–546.
  20. Lamara, M., Derriche, Z. and Romero, E. (2010). Microstructure et potentiel de gonflement d’une argile du Sahara algérien. Revue Française de Géotechnique, 126–127, 93–100. (In French).
  21. Li, Z.S. (2015). Etudes des propriétés hydromécaniques des sols argileux non saturés proches de la saturation. Doctoral dissertation, Ecole Centrale Paris, France. (In French).
  22. Li, Z.S., Derfouf, F.E.M., Benchouk, A., Abou-Bekr, N., Taibi, S. and Fleureau, J.M. (2017). Volume change behavior of two compacted clayey soils under hydraulic and mechanical loadings. Journal of Geotechnical and Geoenvironmental Engineering, 144(4), 1–14.
  23. Linchang, M., Songyu, L. and Yuanming. L. (2002). Research of soil–water characteristics and shear strength features of Nanyang expansive soil. Engineering Geology, 65(4), 261–267.
  24. Lu, N. and Likos, W.J. (2006). Suction stress characteristic curve for unsaturated soil. Journal of Geotechnical and Geoenvironmental Engineering, 132(2):131–142.
  25. Maria, M., Xiwei, Z., Michael, J.G. and Zeljko, C. (2013). Water Retention and Compressibility of a Lime-Treated, High Plasticity Clay. Geotechnical and Geological Engineering, 31(4), 1171–1185.
  26. Medjnoun, A., Khiatine, M. and Bahar, R. (2014). Caractérisation minéralogique et géotechnique des argiles marneuses gonflantes de la région de Médéa, Algérie. Bulletin of Engineering Geology and the Environment, 73(04), 1259–1272. (In French).
  27. Ménard, L. (1957). In situ measurement of physical properties of soils. Anals of roads abd bridges, 14, 357–377.
  28. Modaressi, A. and Abou-Bekr N. (1994-a). Constitutive model for unsaturated soils: validation on a silty material. In Smith I.M (eds), Proceeding of the 3rd European Conference on Numerical Methods in Geotechnical Engineering. Manchester, England. Rotterdam: Balkema, 91–96.
  29. Mohanty, S.K., Pradhan, P.K. and Mohanty, C.R. (2017). Stabilization of expansive soil using industrial wastes. Geomechanics and Engineering, 12(1), 111–125.
  30. Salager, S., Youssoufi, M.S.E. and Saix C. (2007). Influence of Temperature on the Water Retention Curve of Soils. Modelling and Experiments. In: Schanz T. (eds) Experimental Unsaturated Soil Mechanics. Springer Proceedings in Physics, Springer, Berlin, Heidelberg.
  31. Seiphoori, A., Ferrari, A. and Laloui, L. (2014). Water retention behaviour and microstructural evolution of MX-80 bentonite during wetting and drying cycles. Géotechnique, 64(9), 721–734.
  32. Sidoroff, F., Cambou, B. and Mahboubi, A. (1993). Contact force distribution in granular media. Mechanics of materials, 16(1–2), 83–89.
  33. Sun, D.A., You, G., Zhou, A.N., and Sheng, D.C. (2016). Soil water retention curves and microstructures of undisturbed and compacted Guilin lateritic clay. Bulletin of Engineering Geology and the Environment, 75(2), 781–791.
  34. Sun, W., Sun, D., Fang, L and Liu, S. (2014). Soil-water characteristics of Gaomiaozi bentonite by vapour equilibrium technique. Journal of Rock Mechanics and Geotechnical Engineering, 6(1), 48–54.
  35. Tang, C.S., Wang, D.Y., Shi, B. and Li, J. 2016. Effect of wetting–drying cycles on profile 3 mechanical behavior of soils with different initial conditions. Catena, 139, pp.105–116.
  36. Tripathy, S., Tadza, M.Y.M. and Thomas, H.R. (2014). Soil-water characteristic curves of clays. Canadian Geotechnical Journal, 51(8), 869–883.
  37. Vanapalli, S.K., Fredlund, D.G. and Pufahl, D.E. (1999). The influence of soil structure and stress history on the soil-water characteristics of a compacted till. Géotechnique, 49(2), 143–159.
  38. Van Genuchten, M.T. (1980). A closed form equation predicting the hydraulic conductivity of unsaturated soils. Soil Science Society of America Journal, 44(5), 892–898.
  39. Wang, D.Y., Tang, C.S, Cui, Y.J., Bin, S. and Jian, L. (2016). Effects of wetting–drying cycles on soil strength profile of a silty clay in micro-penetrometer tests. Engineering Geology, 206, 60–70.
  40. Wei, X., Hattab, M., Fleureau, J.M. and Hu, R. (2013). Micro-macro-experimental study of two clayey materials on drying paths. Bulletin of Engineering Geology and the Environment, 72(3–4), 495–508.
  41. Wenjing, S., Déan, S., Lei, F. and Shiqing, L. (2014). Soil-water characteristics of Gaomiaozi bentonite by vapour equilibrium technique. Journal of Rock Mechanics and Geotechnical Engineering, 6(1), 48–54.
  42. Zerhouni, M.I. (1991). Rôle de la pression interstitielle négative dans le comportement des sols-Application au calcul des routes. Ph.D. Thesis, Ecole Centrale Paris, Paris, France. (In French).
  43. Zhao, Y., Ren, S., Jiang, D., Liu, R., Wu, J. and Jiang, X. (2018). Influence of wetting-drying cycles on the pore structure and mechanical properties of mudstone from Simian Mountain. Construction and Building Materials, 191, 923–931.
  44. Zhong, X., Wang, Q. and Liu, Z. (2018). Influence of Stress on Soil-water Characteristic Curve of Intact Loess. IOP Conference Series: Materials Science and Engineering. 452. 032049.
DOI: https://doi.org/10.2478/sgem-2019-0042 | Journal eISSN: 2083-831X | Journal ISSN: 0137-6365
Language: English
Page range: 248 - 262
Submitted on: Nov 1, 2019
|
Accepted on: Feb 22, 2020
|
Published on: Apr 29, 2020
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2020 Mehdi Mebarki, Toufik Kareche, Sabah Benyahia, Feth-Ellah Mounir Derfouf, Nabil Abou-Bekr, Said Taibi, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.