SEED, H. B. - IDRISS, I. M.: Simplified procedure for evaluating soil liquefaction potential. J. Soil Mech. Found. Div., ASCE 97, No. 9, 1971, pp. 1249–1273.
CIRAC, P.: The western South Rhine Basin in the Late Neogene: evolution of sedimentary dynamics and paleogeography during a filling phase. - PhD thesis, Bordeaux 1 University, France, 1985, pp. 283-287.
ABERKAN M.: Study of the Quaternary formations of the Rharb basin margins: northwestern Morocco. PhD thesis, Bordeaux 1 University, France, 1985, 290 p, https://doi.org/10.1016/j.crte.2006.09.008.
LITTO W. - JAAIDI E.B. - MEDINA F. - Dakki M.: Seismostructural study of the northern margin of the Gharb Basin (Rifain foreland, Morocco): evidence of late Miocene-age distension. Eclogae geol. Helv, 2001, pp. 63-94, doi:10.5169/seals-168877.
JUANG, H. – YUAN, H. – LEE, D. – LIN, P.: Simplified cone penetration test-based method for evaluating liquefaction resistance of soils. - Journal of Geotechnical and Geo-environmental Engineering. - ASCE, vol. 129, no. 1, 2003, pp. 66-80, doi:10.1061/(ASCE)10900241(2003)129:1(66).
Moss, R. E. S., Seed, R. B., Kayen, R. E., Stewart, J. P., Der Kiureghian, A., and Cetin, K. O. (2006). “CPT-based probabilistic and deterministic assessment of in situ seismic soil liquefaction potential.” J. Geotech. Geoenviron. Eng., 1032–1051.
Idriss, I. M. - and Boulanger, R. W.: (2008). Soil liquefaction during earthquakes. - Monograph MNO-12, Earthquake Engineering Research Institute, Berkeley, CA.
OLSEN, R.S, Cyclic liquefaction based on the cone penetrometer test. - In: Youd T.L, Idriss I.M, editors. Proceedings of the NCEER Workshop on Evaluation of Liquefaction Resistance of Soils. Technical Report NCEER-97-0022. Buffalo, NY: State University of New York at Buffalo, 1997. pp. 41–88, https://trid.trb.org/view/542975.
KILI, M. - EL MANSOURI, B. - CHAO, J. - AIT FORA, A.: New structural elements in the deep aquifer complex of the Rharb Basin (Morocco): hydrogeological implications,’’ C. R. Geoscience, vol. 338, no. 16, pp. 1195-1201, 2006, doi:10.1016/j.crte.2006.09.008.
HAIDA, M. - AIT FOR A. – PROBST, J.L – SNOUSSI, M.: Hydrology and hydroclimatic fluctuations in the Sebou watershed between 1940 and 1994. - ISSN 1147-7806, Sécheresse, vol. 10, no. 3. pp. 221-226, 1999, https://oatao.univ-toulouse.fr/3477/.
IDRISS, I.M. - BOULANGER R.W. - In: Doolin D, editor.: Semi-empirical procedures for evaluating liquefaction potential during earthquakes. - Proc, 11th International conference on soil dynamics and earthquake engineering, and 3rd International conference on earthquake geotechnical engineering, vol. 26, no. 2, pp. 115-130, 2004, doi:10.1016/J.SOILDYN.2004.11.023.
ROBERTSON P.K and WRIDE C.E, ‘‘Cyclic liquefaction and its evaluation based on SPT and CPT,’’ Proc., NCEER Workshop on Evaluation of Liquefaction Resistance of Soils, Tech. Rep. No. NCEER-97-0022, 1997, pp. 41–88, http://worldcat.org/issn/10883800.
Juang H. – Yuan, H. – Lee, D. – Ku, C.S. - Assessing CPT-based methods for liquefaction evaluation with emphasis on the cases from the Chi-Chi, Taiwan, earthquake. - Soil Dynamics and Earthquake Engineering, Volume 22, Issue 3, 2002, pp. 241-258. https://doi.org/10.1016/S0267-7261(02)00013-1.
Lee, D.H. – Ku, C.S. – Yuan, H. - A study of the liquefaction risk potential at Yuanlin, Taiwan. -Engineering Geology, Volume 71, Issue 1, 2004, pp. 97-117. Doi:10.1016/S0013-7952(03)00128-5.
Wang, J.S. - Hwang, J.H. - Deng, Y.C. and al. Model uncertainties of SPT, CPT, and VS-based simplified methods for soil liquefaction assessment. - Bull Eng Geol Environ 82, 260 (2023). https://doi.org/10.1007/s10064-023-03300-6
IWASAKI, T. – TATSUOKA, F. - TOKIDA, K. - YASUDA, S.: (1978). A practical method for assessing soil liquefaction potential based on case studies at various sites in Japan. Proceedings of the 2nd international conference on microzonation for safer construction – research and application, vol. II, pp. 885–896. Arlington, VA, USA: National Science Foundation.