Jaeger HM, Nagel SR. Granular solids, liquids, and gases. Reviews of Modern Physics 1996; 68(4):1259-1273.
de Gennes PG. Granular matter: a tentative view. Reviews of Modern Physics 1999; 71(2):S374-S382.
Coussot P, Roussel N, Jarny S, Chanson H. Continuous or catastrophic solid-liquid transition in jammed systems. Physics of Fluids 2005; 17:011704.
Coussot P, Raynaud JS, Bertrand F, Moucheront P, Guilbaud JP, Huynh HT, Jarny S, Lesueur D. Coexistence of liquid and solid phases in flowing soft-glassy materials. Physical Review Letters 2002; 88(21):218301.
Radjai F, Wolf DE, Jean M, Moreau JJ. Bimodal character of stress transmission in granular packings. Physical Review Letters 1998; 80(1):61-64.
Deboeuf S, Dauchot O, Staron L, Mangeney A, Vilotte JP. Memory of the unjamming transition during cyclic tiltings of a granular pile. Physical Review E 2005; 72(5):051305.
Staron L, Vilotte JP, Radjai F. Preavalanche instabilities in a granular pile. Physical Review Letters 2002; 89(20):204302.
Aranson IS, Tsimring LS. Continuum theory of partially fluidized granular flows. Physical Review E 2002; 65(6):061303.
Huang N. Rhéologie des pâtes granulaires. Ph.D. Thesis, Université Paris 6, 2006.
Andrade JE, Chen Q, Le PH, Avila FCF, Evans TM. On the rheology of dilative granular media: Bridging solid-and fluid-like behavior. Journal of the Mechanics and Physics of Solids 2012; 60(6):1122-1136.
Coussot P, Nguyen QD, Huynh HT, Bonn D. Viscosity bifurcation in thixotropic, yielding fluids. Journal of Rheology 2002; 46(3):573-589.
Jop P, Forterre Y, Pouliquen O. A constitutive law for dense granular flows. Nature 2006; 44:727-730.
Lemiale V, Mühlhaus HB, Meriaux C, Moresi L, Hodkinson L. Rate effects in dense granular materials: Linear stability analysis and the fall of granular columns. International Journal for Numerical and Analytical Methods in Geomechanics 2011; 35(2):293-308.
Pastor M, Manzanal D, Fernández Merodo JA, Mira P, Blanc T, Drempetic V, Pastor MJ, Haddad B, Sánchez M. From solids to fluidized soils: diffuse failure mechanisms in geostructures with applications to fast catastrophic landslides. Granular Matter 2010; 12:211-228.
Laigle D, Lachamp P, Naaim M. SPH-based numerical investigation of mudflow and other complex fluid flow interactions with structures. Computational Geosciences 2007; 11(4):297-306.
Bui HH, Fukagawa R, Sako K, Ohno S. Lagrangian meshfree particles method (SPH) for large deformation and failure flows of geomaterial using elastic-plastic soil constitutive model. International Journal for Numerical and Analytical Methods in Geomechanics 2008; 32(12):1537-1570.
Prime N, Dufour F, Darve F. A unified model for geomaterial solid/fluid states and the transition in between (in publication). Journal of Engineering Mechanics 2013; 04014031-1-04014031-10.
Bigoni D, Noselli G. Experimental evidence of flutter and divergence instabilities induced by dry friction. Journal of Mechanics and Physics of Solids 2001; 59(10):2208-2226.
Khoa HDV, Georgopoulos I, Darve F, Laouafa F. Diffuse failure in geomaterials: Experiments and modelling. Computers and Geotechnics 2006; 33(1):1-14.
Daouadji A, Darve F, Gali HA, Hicher PY, Laouafa F, Lignon S, Nicot F, Nova R, Pinheiro M, Prunier F, Sibille L, Wan R. Diffuse failure in geomaterials: Experiments, theory and modelling. International Journal of Numerical and Analytical Methods in Geomechanics 2011; 35(16):1731-1773.
Nicot F, Darve F. Diffuse and localized failure modes, two competing mechanisms. International Journal for Numerical and Analytical Methods in Geomechanics 2011; 35(5):586-601.
Nicot F, Daouadji A, Laouafa F, Darve F. Second-order work, kinetic energy and diffuse failure in granular materials. Granular Matter 2011; 13(1):19-28.
Rudnicki JW, Rice J. Conditions for the localization of deformation in pressure sensitive dilatant materials. International Journal of Solids and Structures 1975; 23:371-394.
Darve F, Servant G, Laouafa F, Khoa HDV. Failure in geomaterials: continuous and discrete analysis. Computer Methods in Applied Mechanics and Engineering 2004; 193(27):3057-3085.
Rice JR. Inelastic constitutive relations for solids: an internal-variable theory and its application to metal plasticity. Journal of the Mechanics and Physics of Solids 1971; 19:433-455.
Lignon S, Laouafa F, Prunier F, Khoa HDV, Darve F. Hydro-mechanical modelling of landslides with a material instability criterion. Geotechnique 2009; 59(6):513-524.
Hill R. A general theory of uniqueness and stability in elasto-plastic solids. Journal of the Mechanics and Physics of Solids 1958; 6:236-249.
Nova R. Controllability of the incremental response of soil specimens subjected to arbitrary loading programmes. Journal of the Mechanical behavior of Materials 1994; 5(2):193-202.
Darve F, Laouafa F. Instabilities in granular material and application to landslides. Mechanics of Cohesive-Frictional Materials 2000; 5:627-652.
Laouafa F, Darve F. Modelling of slope failure by material instability mechanism. Computers and Geotechnics 2002; 29:301-325.
Bigoni D, Hueckel T. Uniqueness and localization I. Associative and non-associative elastoplasticity. International Journal of Solids and Structures 1991; 28(2):197-213.
Daido A. On the occurence of mud-debris flow. Bulletin of the Disaster Prevention Research Institute, Kyoto Univ 1971; 21:109-135.
Coussot P, Boyer S. Determination of yield stress fluid behaviour from inclined plane test. Rheologica acta 1995; 34(6):534-543.
Barnichon JD. Finite element modeling in structural and petroleum geology. Ph.D. Thesis, Université de Liège, 1998.
VanEekelen HAM. Isotropic yield surface in three dimensions for use in soil mechanics. International Journal for Numerical and Analytical Methods in Geomechanics 1980; 4:89-101.
Taylor D. Fundamentals of soil mechanics - London Wiley, 1948.
Coussot P, Piau JM. On the behavior of fine mud suspensions. Rheological Acta 1994; 33:175-184.
Coussot P, Proust S, Ancey C. Rheological interpretation of deposits of yield stress fluids. Journal of Non-Newtonian Fluid Mechanics 1996; 66:55-70.
Roussel N. Rheology of fresh concrete: from measurements to predictions of casting processes. Materials and Structures 2007; 40(10):1001-1012.
Roussel N, Geiker MR, Dufour F, Thrane LN, Szabo P. Computational modeling of concrete flow: General overview. Cement and Concrete Research 2007; 37(9):1298-1307.
Duvaut G, Lions JL. Transfert de chaleur dans un fluide de bingham dont la viscosité dépend de la température. Journal of Funtional Analysis 1972; 11:93-110.
Balmforth NJ, Craster RV. A consistent thin layer theory for bingham plastics. Journal of non-newtonian fluid mechanics 1999; 84(1):65-81.
Harlow FH. In The particle-in-cell computing method for fluid dynamics in fundamental methods in hydrodynamics, Lader B, Fernbach S, Rotenberg M (eds). Academic Press: New York, 1964; 319-343.
Moresi L, Solomatov VS. Numerical investigation of 2d convection with extremely large viscosity variations. Physics of Fluids 1995; 7:2154.
Moresi L, Dufour F, Mühlhaus HB. A lagrangian integration point finite element method for large deformation modeling of viscoelastic geomaterials. Journal of Computational Physics 2003; 184(2):476-497.
Sulsky D, Schreyer HL. Axisymmetric form of the material point method with applications to upsetting and Taylor impact problems. Computer Methods in Applied Mechanics and Engineering 1996; 139(1):409-429.
Dufour F, Pijaudier-Cabot G. Numerical modelling of concrete flow: homogeneous approach. International Journal for Numerical and Analytical Methods in Geomechanics 2005; 29(4):395-416.
O'Neill C, Moresi L, Müller D, Albert R, Dufour F. Ellipsis 3d: A particle-in-cell finite-element hybrid code for modelling mantle convection and lithospheric deformation. Computers and Geosciences 2006; 32(10):1769-1779.
Cuomo S, Prime N, Iannone AL, Dufour F, Cascini L, Darve F. Large deformation FEMLIP drained analysis of a vertical cut. Acta Geotecnica ASCE 2013; 1:1.
Preisig M, Zimmermann T. Two-phase free-surface fluid dynamics on moving domains. Journal of Computational Physics 2010; 229(7):2740-2758.
Olivares L, Picarelli L. Occurrence of flowslides in soils of pyroclastic origin and consideratoins for landslide hazard mapping. Proceedings of 14th South-East Asian Conference, HongKong, 2001; 881-886.
Olivares L, Picarelli L. Suceptibility of loose pyroclastic soils to static liquefaction: some preliminary datas. In Proceedings of International Conference on Landslides - Causes, Impacts and Countermeasures, Davos, Kühne M, Einstein HH, Krauter E, Klapperich H, Pöttler R (eds): Essen, 2001; 75-85.
Cascini L, Cuomo S, Pastor M, Sorbino G. Modeling of rainfall-induced shallow landslides of the flow-type. Journal of Geotechnical and Geoenvironmental Engineering 2010; 136:85.
Crosta GB, Dal Negro P. Observations and modelling of soil slip-debris flow initiation processes in pyroclastic deposits: the sarno 1998 event, 2003.
Jeyapalan JK, Duncan JM, Seed HB. Investigation of flow failures of tailing dams. Journal of Geotechnical Engineering ASCE 1983; 109:172-189.
Pastor M, Fernández Merodo JA, Herreros MI, Pira P, González E, Haddad B, Quecedo M, Tonni L, Drempetic V. Mathematical, constitutive and numerical modelling of catastrophic landslides and related phenomena. Rock Mechanics and Rock Engineering 2008; 41(1):85-132.
Soga K. Failure observed in landslides. Presentation in Alert Worshop, 2011.
De Blasio FV, Elverhoi A, Issler D, Harbitz CB, Bryn P, Lien R. Flow models of natural debris flows originating from overconsolidated clay materials. Marine Geology 2004; 213:439-455.
Chanut B, Faug T, Naaim M. Time-varying force from dense granular avalanches on a wall. Physical Review E 2010; 82(4):041302.
Faug T, Beguin R, Chanut B. Mean steady granular force on a wall overflowed by free-surface gravity-driven dense flows. Physical Review E 2009; 80(2):021305.
Idelsohn SR, Oñate E, Pin F. The particle finite element method: a powerful tool to solve incompressible flows with free-surfaces and breaking waves. International Journal for Numerical Methods in Engineering 2004; 61(7):964-989.