[1] Bishop, A.W. (1966) The Strength of Soils as Engineering Materials. Sixth Rankine Lecture. Geotechnique, 16, 89- 130. http://dx.doi.org/10.1680/geot.1966.16.2.91
[2] Castro, G. (1969) Liquefaction of Sands. Soil Mechanics Series No. 81, Harvard Univ., Cambridge.
[3] Cundall, P.A. (1971) A Computer Model for Simulating Progressive, Large-Scale Movements in Blocky Rock Systems. Proc. Symp. Int. Soc. Rock Mech., 2, 2-8.
[4] Thornton, C. and Barnes, D.J. (1986) Com-puter Simulated Deformation of Compact Granular Assemblies. Acta Mechanica, 64, 45-61. http://dx.doi.org/10.1007/BF01180097
[5] Ng, T.-T. and Dobry, R. (1994) Numerical Simulations of Monotonic and Cyclic Loading of Granular Soil. Journal of Geotechnical Engineering, ASCE, 120, 388-403. http://dx.doi.org/10.1061/(ASCE)0733-9410(1994)120:2(388)
[6] Bonilla, R.R.O. (2004) Numerical Simulations of Undrained Granular Media. Ph.D. Thesis, University of Waterloo, Canada.
[7] Shafipour, R. and Soroush, A. (2008) Fluid Coupled-DEM Modelling of Undrained Behaviour of Granular Media. Computers and Geotechnics, 35, 673-685. http://dx.doi.org/10.1016/j.compgeo.2007.12.003
[8] Thornton, C. (2000) Numerical Simulations of Deviatoric Shear Deformation of Granular Media. Geotechnique, 50, 43-53. http://dx.doi.org/10.1680/geot.2000.50.1.43
[9] Mindlin, R.D. and Deresiewicz, H. (1953) Elastic Spheres in Contact under Varying Oblique Force. Trans. ASME, J. Appl. Mech. 20, 327-344.
[10] Thornton, C. (1999) Interparticle Relationships between Forces and Displacements. In: Oda, M. and Iwashita, K., Eds., Mechanics of Granular Materials—An Introduction, Balkema, Rotterdam, 207-217.
[11] Thornton, C. and Randall, C.W. (1988) Applications of Theoretical Contact Mechanics to Solid Particle System Simulation. In: Satake and Jenkins, Eds., Micromechanics of Granular Materials, Elsevier, Amsterdam, 133-142.
[12] Gong, G. (2008) DEM Simulations of Drained and Undrained Behaviour. Ph.D. Thesis, University of Birmingham, UK.
[13] Cundall, P.A. (1988) Computer Simulations of Dense Sphere Assemblies. In: Satake and Jenkins, Eds., Micromechanics of Granular Materials, Elsevier, Amsterdam, 113-123. http://dx.doi.org/10.1016/b978-0-444-70523-5.50021-7
[14] Thornton, C. and Zhang, L. (2010) On the Evolution of Stress and Microstructure during General 3D Deviatoric Straining of Granular Media. Geotechnique, 60, 333-341. http://dx.doi.org/10.1680/geot.2010.60.5.333
[15] Poulos, S.J. (1981) The Steady State of Deformation. Journal of Geotechnical Engineering, ASCE, 17, 553-562.
[16] Alarcon-Guzman, A., Leonards, G.A. and Chameau, J.L. (1988) Un-drained Monotonic and Cyclic Strength of Sand. Journal of Geotechnical Engineering, ASCE, 114, 1089-1109. http://dx.doi.org/10.1061/(ASCE)0733-9410(1988)114:10(1089)
[17] Gong, G., Zha, X. and Wan, C. (2012) A Microscopic Definition of Liquefaction for Sand. International Conference on Structural Computation and Geotechnical Mechanics, Procedia Earth and Planetary Science, 5, 140-145. http://dx.doi.org/10.1016/j.proeps.2012.01.024
[18] Gong, G., Lin, P., Qin, Y. and Wei, J. (2012) DEM Simulation of Liquefaction for Granular Media under Undrained Axisymmetric Compression and Plane Strain Conditions. Acta Mechanica Solida Sinica, 25, 562-570. http://dx.doi.org/10.1016/S0894-9166(12)60051-2