A Lagrangian finite element approach for the simulation of water-waves induced by landslides
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[1] U. Perego,et al. Simulation of the flow of fresh cement suspensions by a Lagrangian finite element approach , 2010 .
[2] L. Preziosi,et al. A new model for snow avalanche dynamics based on non-Newtonian fluids , 2010 .
[3] Massimiliano Cremonesi,et al. A Lagrangian finite element approach for the analysis of fluid–structure interaction problems , 2010 .
[4] Dominique Chapelle,et al. On the ellipticity condition for model-parameter dependent mixed formulations , 2010 .
[5] M. Pastor,et al. A depth‐integrated, coupled SPH model for flow‐like landslides and related phenomena , 2009 .
[6] Antonia Larese,et al. Validation of the particle finite element method (PFEM) for simulation of free surface flows , 2008 .
[7] Liu-Chao Qiu,et al. Two-Dimensional SPH Simulations of Landslide-Generated Water Waves , 2008 .
[8] W. Hager,et al. Scale effects in subaerial landslide generated impulse waves , 2008 .
[9] Eugenio Oñate,et al. Advances in the particle finite element method for the analysis of fluid-multibody interaction and bed erosion in free surface flows , 2008 .
[10] Behzad Ataie-Ashtiani,et al. Numerical simulation of landslide impulsive waves by incompressible smoothed particle hydrodynamics , 2008 .
[11] Comparison between Computed and Experimentally Generated Impulse Waves , 2007 .
[12] Willi H. Hager,et al. Plane Impulse Waves in Reservoirs , 2006 .
[13] Eugenio Oñate,et al. Fluid-structure interaction using the particle finite element method , 2006 .
[14] Hitoshi Gotoh,et al. Key issues in the particle method for computation of wave breaking , 2006 .
[15] Eugenio Oñate,et al. The particle finite element method: a powerful tool to solve incompressible flows with free‐surfaces and breaking waves , 2004 .
[16] Mahesh Prakash,et al. Discrete–element modelling and smoothed particle hydrodynamics: potential in the environmental sciences , 2004, Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[17] E. Oñate,et al. The particle finite element method. An overview , 2004 .
[18] Nader A. Issa,et al. Fluid motion generated by impact , 2003 .
[19] Philip Watts,et al. Tsunamis generated by subaerial mass flows , 2003 .
[20] Hermann M. Fritz,et al. Pneumatic Landslide Generator , 2003 .
[21] Ronald Fedkiw,et al. Level set methods and dynamic implicit surfaces , 2002, Applied mathematical sciences.
[22] Giovanni B. Crosta,et al. Numerical Modeling of Large Landslide Stability and Runout , 2003 .
[23] Hervé Capart,et al. Riemann wave description of erosional dam-break flows , 2002, Journal of Fluid Mechanics.
[24] Hermann M. Fritz,et al. Lituya Bay Case Rockslide Impact and Wave Run-up , 2001 .
[25] Tayfun E. Tezduyar,et al. Finite element stabilization parameters computed from element matrices and vectors , 2000 .
[26] H Itoh,et al. Hazard estimation of the possible pyroclastic flow disasters using numerical simulation related to the 1994 activity at Merapi Volcano , 2000 .
[27] Stephen Roberts,et al. Numerical solution of the two-dimensional unsteady dam break , 2000 .
[28] Philip Watts,et al. Tsunami features of solid block underwater landslides , 2000 .
[29] Joseph John Monaghan,et al. Scott Russell’s wave generator , 2000 .
[30] S. Tinti,et al. Computer simulations of tsunamis due to sector collapse at Stromboli, Italy , 2000 .
[31] H. Kümpel,et al. Constraints on the formation of submarine lava flows from numerical model calculations , 1999 .
[32] J. Monaghan,et al. Solitary Waves on a Cretan Beach , 1999 .
[33] P. Watts,et al. Wavemaker Curves for Tsunamis Generated by Underwater Landslides , 1998 .
[34] C. Mariotti,et al. Numerical Simulation of Submarine Landslides and Their Hydraulic Effects , 1997 .
[35] K. Bathe. Finite Element Procedures , 1995 .
[36] Herbert Edelsbrunner,et al. Three-dimensional alpha shapes , 1994, ACM Trans. Graph..
[37] G. Pedersen,et al. Numerical Simulations of Large Water Waves due to Landslides , 1993 .
[38] P. Heinrich,et al. Nonlinear Water Waves Generated by Submarine and Aerial Landslides , 1992 .
[39] S. Mittal,et al. Incompressible flow computations with stabilized bilinear and linear equal-order-interpolation velocity-pressure elements , 1992 .
[40] Michel Fortin,et al. Mixed and Hybrid Finite Element Methods , 2011, Springer Series in Computational Mathematics.
[41] Tayfan E. Tezduyar,et al. Stabilized Finite Element Formulations for Incompressible Flow Computations , 1991 .
[42] Jm Townson,et al. SIMULATIONS OF THE WAVES IN LAKE BOTNEN CREATED BY THE RISSA LANDSLIDE . , 1988 .
[43] T. Papanastasiou. Flows of Materials with Yield , 1987 .
[44] D. E. Cass,et al. Modeling of Slide‐Generated Waves in a Reservoir , 1983 .
[45] Sin-Iti Iwasaki,et al. Experimental Study of a Tsunami Generated by a Horizontal Motion of a Sloping Bottom , 1982 .
[46] C. W. Hirt,et al. Volume of fluid (VOF) method for the dynamics of free boundaries , 1981 .
[47] R. L. Wiegel,et al. Laboratory studies of gravity waves generated by the movement of a submerged body , 1955 .