[1] Miura S., Yagi K. & Kawamura S. 1995 Liquefaction damage of sandy and volcanic grounds in the 1993 Hokkaido Nansei-Oki earthquake. International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil dynamics.
[2] Tohno I. & Yasuda S. 1987 Liquefaction of the Ground During the 1978 Miyagiken-Oki earthquake. Soils and Foundations, 21(3), 18-34.
[3] Koester J. P. 1994 The Influence of Fine Type and Content On Cyclic Strength, Ground Failures Under Seismic Conditions. ASCE Geotechnical Special Publication, 44, 17-33.
[4] Kuwano J., Iimura H., Nakazawa H. & Sugihara K. 1995 Liquefaction strength of sand containing kaolin. 50th Japan Society of Civil Engineers Annual Meeting, 506-507.
[5] Boulanger R. & Idriss I. 2004 Evaluating the potential for liquefaction or cyclic failure of silts and clays. Report No. UCD/CDM–04/01, Center for Geotechnical Modeling.
[6] Chang W. J. & Hong M. L. 2008 Effects of clay content on liquefaction characteristics of gap-graded clayey sands. Soils and Foundations, 48(1), 101–114
[7] Kim U., Kim D. & Zhuang L. 2016 Influence of fines content on the undrained cyclic shear strength of sand–clay mixtures. Soil Dynamics and Earthquake Engineering, 83, 124-134.
[8] Konagai K., Johannson J., Mayorca P., Yamamoto T., Miyajima M., Uzuoka R., Pulido E. N., Duran F. C., Sassa K. & Fukuoka H. 2004 Las Colinas landslide caused by the January 13, 2001 off the coast of El Salvador earthquake, Journal of Japan Association for Earthquake Engineering, 2(1), 1–15.
[9] Uzuoka R., Sento N., Kazama M. & Unno T. 2005 Landslides during the earthquakes on May 26 and July 26, 2003 in Miyagi. Soils and Foundations, 45(4), 149–163.
[10] Grozic J. L., Robertson P. K. & Morgenstern N. R. 2000 Cyclic liquefaction of loose gassy sand. Canadian Geotechnical Journal, 37(4), 843-856.
[11] Bouferra R., Benseddiq N. & Shahrour I. 2007 Saturation and preloading effects on the cyclic
Behavior of sand.International journal of geomechanics, 7(5), 396-401.
[12] Okamura M., Ishihara M. & Tamura K. 2006 Degree of saturation and liquefaction resistances
of sand improved with sand compaction pile. Journal of Geotechnical and Geoenvironmental Engineering, 132(2), 258-264.
[13] Kayen R., Moss R. E. S., Thompson E. M., Seed R. B., Cetin K. O., Kiureghian A. D., Tanaka Y. & Tokimatsu K. 2013 Shear-wave velocity–based probabilistic and deterministic assessment of seismic soil liquefaction potential. Journal of Geotechnical and Geoenvironmental Engineering, 139(3), 407-419.
[14] Yoshimi Y., Tanaka K. and Tokimatsu K. 1989 Liquefaction resistance of a partially saturated
Sand. Soils and Foundations, 29(3), 157-162.
[15] Goto S. & Shamoto Y. 2002 Estimation method for the liquefaction strength of unsaturated
sandy soil. Proc., 37th Jpn. Nat. Conf. Geotech. Engrg.
[16] Unno T., Kazama M., Uzuoka R. & Sento N. 2008 Liquefaction of unsaturated sand considering the pore air pressure and volume compressibility of the soil particle skeleton. Soils and Foundations, 48(1), 87-99.
[17] Wang H. & Koseki J. 2013 Liquefaction resistance of unsaturated Inagi sand. JSCE 15th Int.
Summer Symp.
[18] Naeini S. A. & Baziar M. H. 2004 Effect of fines content on steady-state strength of mixed and layered samples of a sand. Soil Dynamics and Earthquake Engineering, 24(3), 181–187.
[19] Thevanayagam S. & Martin G. R. 2002 Liquefaction in silty soils screening and remediation issues. Soil Dynamics and Earthquake Engineering, 22(9), 1035–1042.
[20] Bahadori H., Ghalandarzadeh A. & Towhata I. 2008 Effect of non plastic silt on the anisotropic behaviour of sand. Soils and Foundations, 48(4), 531-546.
[21] Derakhshandi M., Rathje E. M., Hazirbaba K. & Mirhosseini S. M. 2008 The effect of plastic fines on the pore pressure generation characteristics of saturated sands. Soil Dynamics and Earthquake Engineering, 28(5), 376-386.
[22] Okamura M. & Soga Y. 2006 Effects of pore fluid compressibility on liquefaction resistance of
partially saturated sand. Soils and Foundations, 46(5), 695-700.
[23] Ishihara K. 1996 Soil behaviour in earthquake geotechnics. Oxford Un. Press: Oxford, UK.
[24] Bray J. & Sancio R. 2006 Assessment of the liquefaction susceptibility of fine-grained soils. Journal of Geotechnical and Geoenvironmental Engineering, 132(9), 1165–1177.
[25] Wang H. & Koseki J. 2013 Liquefaction resistance of unsaturated Inagi sand. JSCE 15th Int. Summer Symp.
[26] Mendes J, Toll D. G. & Evans F. 2012 A Double Cell Triaxial System for Unsaturated Soils Testing. In Unsaturated soils: Research and applications (pp. 5-10). Springer, Berlin, Heidelberg.
[27] Yin J. 2003 A Double Cell Triaxial System for Continuous Measurement of Volume Changes of an Unsaturated or Saturated Soil Specimen in Triaxial Testing. Geotechnical Testing Journal, 26(3), 353-358.
[28] Okamura M. & Noguchi K. 2009 Liquefaction resistance of unsaturated non-plastic silt, Soil and Foundations, 49(2), 221-229.
[29] ASTM D5311 / D5311M-13, 2013 Standard Test Method for Load Controlled Cyclic Triaxial Strength of Soil, ASTM International, West Conshohocken, PA.