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[KER 05] KERSWELL R. R., “Dam break with Coulomb friction: a model for granular
slumping?” Phys. Fluids , vol. 17, 057101, 2005.
[KOU 93] KOULINSKI V., Étude de la formation d'un lit torrentiel par confrontation d'essais
sur modèle réduit et d'observations sur le terrain. PhD, Grenoble, 1993.
[LAN 93] LANZONI S., Meccanica di miscugli solido-liquido in regime granulo inerziale.
Doctorat, Padoue, 1993.
[LEV 02] LEVEQUE R. J., Finite Volume Methods for Hyperbolic Problems . Cambridge,
Cambridge University Press, 2002.
[LIG 55] LIGHTHILL M. J., WHITHAM G. B., “On kinematic waves. I. Flood movement in
long rivers”. Proc. R. Soc. London ser. A , vol. 229, p. 281-316, 1955.
[LIU 90a] LIU K. F., MEI C. C., “Approximate equations for the slow spreading of a thin sheet
of Bingham plastic fluid”. Phys. Fluids A , vol. 2, p. 30-36, 1990a.
[LIU 90b] LIU K. F., MEI C. C., “Roll waves on a layer of a muddy fluid flowing down a
gentle slope - A Bingham model”. Phys. Fluids , vol. 6, p. 2577-2590, 1990b.
[LIU 90c] LIU K. F., MEI C. C., “Slow spreading of a sheet of Bingham fluid on an inclined
plane”. J. Fluid Mech. , vol. 207, p. 505-529, 1990c.
[LOO 03] LOOTENS D., VAN DAMME H., HÉBRAUD P., “Giant stress fluctuations at the
jamming transition”. Phys. Rev. Lett. , vol. 90, 178301, 2003.
[MAJ 96] MAJOR J. J., Experimental Studies of Deposition of Debris Flows: Process,
Characteristics of Deposits, and Effects of Pore-Fluid Pressure. PhD, Washington, 1996.
[MAJ 97] MAJOR J. J., “Depositional processes in large-scale debris-flow experiments”.
J. Geol. , vol. 105, p. 345-366, 1997.
[MAJ 00] MAJOR J. J., “Gravity-driven consolidation of granular slurries - Implications for
debris-flow deposition and deposit characteristics”. J. Sediment. Res. , vol. 70, p. 64-83,
2000.
[MAJ 97] MAJOR J. J., IVERSON R. M., MCTIGUE D. F., MACIAS S., FIEDOROWICZ
B. K., “Geotechnical properties of debris-flow sediments and slurries”, in C.-L. CHEN (ed.),
Debris Flow Mechanics and Mitigation Conference , p. 249-259, 1997.
[MAJ 92] MAJOR J. J., PIERSON T. C., “Debris flow rheology: experimental analysis of fine-
grained slurries”. Water Resour. Res. , vol. 28, p. 841-857, 1992.
[MAN 00] MANGENEY A., HEINRICH P., ROCHE R., “Analytical solution for testing
debris avalanche numerical models”. Pure Appl. Geophys. , vol. 157, p. 1081-1096, 2000.
[MAR 06] MARQUEZ M., ROBBEN A., GRADY B. P., ROBB I., “Viscosity and yield stress
reduction in non-colloidal concentrated suspensions by surface modification with polymers
and surfactants and/or nanoparticle addition”. J. Colloid. Interface Sci. , vol. 295, p. 374-
387, 2006.
[MAR 03] MARTINO R., “Experimental analysis on the rheological properties of a debris-
flow deposit”, in C.-L. CHEN and D. RICKENMANN (eds.), Debris Flow Mechanics and
Mitigation Conference , p. 363-373. Davos, Mills Press, 2003.
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